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authorJohannes Ranke <jranke@uni-bremen.de>2024-08-26 17:11:43 +0200
committerJohannes Ranke <jranke@uni-bremen.de>2024-08-26 17:11:43 +0200
commit913c383880da2a5f4bdb71c8a82107afbad6ef13 (patch)
tree1c5a988748fc49fde4c279a96650deb26039b711 /docs/reference
parent9e62ed638e530a5cebebf491de055caca49a56ef (diff)
parent396ba6c42252426a132be56b9f417786a1f276e3 (diff)
Merge branch 'main' into crop_group
Diffstat (limited to 'docs/reference')
-rw-r--r--docs/reference/EFSA_GW_interception_2014.html47
-rw-r--r--docs/reference/EFSA_washoff_2017.html47
-rw-r--r--docs/reference/FOCUS_GW_scenarios_2012.html51
-rw-r--r--docs/reference/FOCUS_Step_12_scenarios.html51
-rw-r--r--docs/reference/FOMC_actual_twa.html55
-rw-r--r--docs/reference/GUS.chent.html8
-rw-r--r--docs/reference/GUS.html87
-rw-r--r--docs/reference/GUS.numeric.html8
-rw-r--r--docs/reference/PEC_soil.html101
-rw-r--r--docs/reference/PEC_sw_drainage_UK.html71
-rw-r--r--docs/reference/PEC_sw_drift.html120
-rw-r--r--docs/reference/PEC_sw_exposit_drainage.html89
-rw-r--r--docs/reference/PEC_sw_exposit_runoff.html138
-rw-r--r--docs/reference/PEC_sw_focus.html85
-rw-r--r--docs/reference/PEC_sw_sed.html90
-rw-r--r--docs/reference/SFO_actual_twa.html53
-rw-r--r--docs/reference/SSLRC_mobility_classification.html59
-rw-r--r--docs/reference/TOXSWA_cwa.html55
-rw-r--r--docs/reference/TSCF.html57
-rw-r--r--docs/reference/drift_data_JKI.html54
-rw-r--r--docs/reference/drift_parameters_focus.html51
-rw-r--r--docs/reference/drift_percentages_rautmann.html59
-rw-r--r--docs/reference/endpoint.html79
-rw-r--r--docs/reference/index.html346
-rw-r--r--docs/reference/max_twa.html61
-rw-r--r--docs/reference/one_box.character.html8
-rw-r--r--docs/reference/one_box.mkinfit.html8
-rw-r--r--docs/reference/one_box.numeric.html8
-rw-r--r--docs/reference/perc_runoff_exposit.html73
-rw-r--r--docs/reference/perc_runoff_reduction_exposit.html49
-rw-r--r--docs/reference/print.GUS_result.html8
-rw-r--r--docs/reference/set_nd_nq.html8
-rw-r--r--docs/reference/set_nd_nq_focus.html8
-rw-r--r--docs/reference/soil_DT50.html8
-rw-r--r--docs/reference/soil_Kfoc.html8
-rw-r--r--docs/reference/soil_N.html8
-rw-r--r--docs/reference/soil_scenario_data_EFSA_2015.html51
-rw-r--r--docs/reference/soil_scenario_data_EFSA_2017.html51
-rw-r--r--docs/reference/soil_sorption.html8
-rw-r--r--docs/reference/twa.one_box.html8
40 files changed, 1081 insertions, 1153 deletions
diff --git a/docs/reference/EFSA_GW_interception_2014.html b/docs/reference/EFSA_GW_interception_2014.html
index 555509e..cf97c02 100644
--- a/docs/reference/EFSA_GW_interception_2014.html
+++ b/docs/reference/EFSA_GW_interception_2014.html
@@ -1,43 +1,34 @@
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- <img src="" class="logo" alt=""><h1>Subset of EFSA crop interception default values for groundwater modelling</h1>
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<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/EFSA_GW_interception_2014.R" class="external-link"><code>R/EFSA_GW_interception_2014.R</code></a></small>
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@@ -78,23 +69,23 @@ products of these active substances in soil. <em>EFSA Journal</em>
<span class="r-out co"><span class="r-pr">#&gt;</span> Winter cereals 0 0.00 0.20 0.80 0.90 0.90 0.90 0.80 0.80 0.80</span>
</code></pre></div>
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diff --git a/docs/reference/EFSA_washoff_2017.html b/docs/reference/EFSA_washoff_2017.html
index 3603cda..a6b51d9 100644
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+++ b/docs/reference/EFSA_washoff_2017.html
@@ -1,43 +1,34 @@
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- <img src="" class="logo" alt=""><h1>Subset of EFSA crop washoff default values</h1>
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<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/EFSA_washoff_2017.R" class="external-link"><code>R/EFSA_washoff_2017.R</code></a></small>
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@@ -78,23 +69,23 @@ doi:10.2903/j.efsa.2017.4982</p>
<span class="r-out co"><span class="r-pr">#&gt;</span> Winter cereals NA 0.10 0.40 0.60 0.55 0.55 0.55 0.60 0.60 0.40</span>
</code></pre></div>
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diff --git a/docs/reference/FOCUS_GW_scenarios_2012.html b/docs/reference/FOCUS_GW_scenarios_2012.html
index 20140cc..b2295c5 100644
--- a/docs/reference/FOCUS_GW_scenarios_2012.html
+++ b/docs/reference/FOCUS_GW_scenarios_2012.html
@@ -1,45 +1,36 @@
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+soil definitions are from page 46ff. from FOCUS (2012)."><meta property="og:description" content="Currently, only scenario names with acronyms and a small subset of the soil definitions are provided. The
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- <img src="" class="logo" alt=""><h1>A very small subset of the FOCUS Groundwater scenario definitions</h1>
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<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/FOCUS_GW_scenarios_2012.R" class="external-link"><code>R/FOCUS_GW_scenarios_2012.R</code></a></small>
<div class="d-none name"><code>FOCUS_GW_scenarios_2012.Rd</code></div>
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@@ -130,23 +121,23 @@ http://focus.jrc.ec.europa.eu/gw/docs/Generic_guidance_FOCV2_1.pdf</p>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
</code></pre></div>
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diff --git a/docs/reference/FOCUS_Step_12_scenarios.html b/docs/reference/FOCUS_Step_12_scenarios.html
index aab1d87..536b974 100644
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+++ b/docs/reference/FOCUS_Step_12_scenarios.html
@@ -1,45 +1,36 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="The data were extracted from the scenario.txt file using the R code shown below.
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+The text file is not included in the package as its licence is not clear."><meta property="og:description" content="The data were extracted from the scenario.txt file using the R code shown below.
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- <img src="" class="logo" alt=""><h1>Step 1/2 scenario data as distributed with the FOCUS Step 1/2 calculator</h1>
+
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<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/FOCUS_Step_12_scenarios.R" class="external-link"><code>R/FOCUS_Step_12_scenarios.R</code></a></small>
<div class="d-none name"><code>FOCUS_Step_12_scenarios.Rd</code></div>
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@@ -101,23 +92,23 @@ calculations in a matrix called 'rd'.</p>
<span class="r-out co"><span class="r-pr">#&gt;</span> list()</span>
</code></pre></div>
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- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
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diff --git a/docs/reference/FOMC_actual_twa.html b/docs/reference/FOMC_actual_twa.html
index b66cd35..1e0fd64 100644
--- a/docs/reference/FOMC_actual_twa.html
+++ b/docs/reference/FOMC_actual_twa.html
@@ -1,43 +1,34 @@
<!DOCTYPE html>
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+ <ul class="navbar-nav me-auto"><li class="active nav-item"><a class="nav-link" href="../reference/index.html">Reference</a></li>
+<li class="nav-item"><a class="nav-link" href="../news/index.html">Changelog</a></li>
+ </ul><ul class="navbar-nav"><li class="nav-item"><form class="form-inline" role="search">
+ <input class="form-control" type="search" name="search-input" id="search-input" autocomplete="off" aria-label="Search site" placeholder="Search for" data-search-index="../search.json"></form></li>
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-
+
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</nav><div class="container template-reference-topic">
<div class="row">
<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Actual and maximum moving window time average concentrations for FOMC kinetics</h1>
+
+ <h1>Actual and maximum moving window time average concentrations for FOMC kinetics</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/FOMC_actual_twa.R" class="external-link"><code>R/FOMC_actual_twa.R</code></a></small>
<div class="d-none name"><code>FOMC_actual_twa.Rd</code></div>
</div>
@@ -63,15 +54,17 @@ Kinetics from Environmental Fate Studies on Pesticides in EU Registration, Versi
</div>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>alpha</dt>
+
+
+<dl><dt id="arg-alpha">alpha<a class="anchor" aria-label="anchor" href="#arg-alpha"></a></dt>
<dd><p>Parameter of the FOMC model</p></dd>
-<dt>beta</dt>
+<dt id="arg-beta">beta<a class="anchor" aria-label="anchor" href="#arg-beta"></a></dt>
<dd><p>Parameter of the FOMC model</p></dd>
-<dt>times</dt>
+<dt id="arg-times">times<a class="anchor" aria-label="anchor" href="#arg-times"></a></dt>
<dd><p>The output times, and window sizes for time weighted average concentrations</p></dd>
</dl></div>
@@ -97,23 +90,23 @@ Kinetics from Environmental Fate Studies on Pesticides in EU Registration, Versi
<span class="r-out co"><span class="r-pr">#&gt;</span> 100 0.09088729 0.2397608</span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
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- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
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- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
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diff --git a/docs/reference/GUS.chent.html b/docs/reference/GUS.chent.html
new file mode 100644
index 0000000..15d3826
--- /dev/null
+++ b/docs/reference/GUS.chent.html
@@ -0,0 +1,8 @@
+<html>
+ <head>
+ <meta http-equiv="refresh" content="0;URL=https://pkgdown.jrwb.de/pfm/reference/GUS.html" />
+ <meta name="robots" content="noindex">
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diff --git a/docs/reference/GUS.html b/docs/reference/GUS.html
index 7638dcd..a613d98 100644
--- a/docs/reference/GUS.html
+++ b/docs/reference/GUS.html
@@ -1,47 +1,38 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="The groundwater ubiquity score GUS is calculated according to
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Groundwater ubiquity score based on Gustafson (1989) — GUS • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Groundwater ubiquity score based on Gustafson (1989) — GUS"><meta name="description" content="The groundwater ubiquity score GUS is calculated according to
the following equation
-$$GUS = \log_{10} DT50_{soil} (4 - \log_{10} K_{oc})$$"><title>Groundwater ubiquity score based on Gustafson (1989) — GUS • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Groundwater ubiquity score based on Gustafson (1989) — GUS"><meta property="og:description" content="The groundwater ubiquity score GUS is calculated according to
+$$GUS = \log_{10} DT50_{soil} (4 - \log_{10} K_{oc})$$"><meta property="og:description" content="The groundwater ubiquity score GUS is calculated according to
the following equation
-$$GUS = \log_{10} DT50_{soil} (4 - \log_{10} K_{oc})$$"><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
-<script src="https://oss.maxcdn.com/html5shiv/3.7.3/html5shiv.min.js"></script>
-<script src="https://oss.maxcdn.com/respond/1.4.2/respond.min.js"></script>
-<![endif]--></head><body>
+$$GUS = \log_{10} DT50_{soil} (4 - \log_{10} K_{oc})$$"></head><body>
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-
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+
<a class="navbar-brand me-2" href="../index.html">pfm</a>
- <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.1</small>
+ <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.3</small>
+
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<button class="navbar-toggler" type="button" data-bs-toggle="collapse" data-bs-target="#navbar" aria-controls="navbar" aria-expanded="false" aria-label="Toggle navigation">
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+<li class="nav-item"><a class="nav-link" href="../news/index.html">Changelog</a></li>
+ </ul><ul class="navbar-nav"><li class="nav-item"><form class="form-inline" role="search">
+ <input class="form-control" type="search" name="search-input" id="search-input" autocomplete="off" aria-label="Search site" placeholder="Search for" data-search-index="../search.json"></form></li>
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-
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<div class="row">
<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Groundwater ubiquity score based on Gustafson (1989)</h1>
+
+ <h1>Groundwater ubiquity score based on Gustafson (1989)</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/GUS.R" class="external-link"><code>R/GUS.R</code></a></small>
<div class="d-none name"><code>GUS.Rd</code></div>
</div>
@@ -56,10 +47,10 @@ $$GUS = \log_{10} DT50_{soil} (4 - \log_{10} K_{oc})$$</p>
<h2 id="ref-usage">Usage<a class="anchor" aria-label="anchor" href="#ref-usage"></a></h2>
<div class="sourceCode"><pre class="sourceCode r"><code><span><span class="fu">GUS</span><span class="op">(</span><span class="va">...</span><span class="op">)</span></span>
<span></span>
-<span><span class="co"># S3 method for numeric</span></span>
+<span><span class="co"># S3 method for class 'numeric'</span></span>
<span><span class="fu">GUS</span><span class="op">(</span><span class="va">DT50</span>, <span class="va">Koc</span>, <span class="va">...</span><span class="op">)</span></span>
<span></span>
-<span><span class="co"># S3 method for chent</span></span>
+<span><span class="co"># S3 method for class 'chent'</span></span>
<span><span class="fu">GUS</span><span class="op">(</span></span>
<span> <span class="va">chent</span>,</span>
<span> degradation_value <span class="op">=</span> <span class="st">"DT50ref"</span>,</span>
@@ -71,18 +62,20 @@ $$GUS = \log_{10} DT50_{soil} (4 - \log_{10} K_{oc})$$</p>
<span> <span class="va">...</span></span>
<span><span class="op">)</span></span>
<span></span>
-<span><span class="co"># S3 method for GUS_result</span></span>
+<span><span class="co"># S3 method for class 'GUS_result'</span></span>
<span><span class="fu"><a href="https://rdrr.io/r/base/print.html" class="external-link">print</a></span><span class="op">(</span><span class="va">x</span>, <span class="va">...</span>, digits <span class="op">=</span> <span class="fl">1</span><span class="op">)</span></span></code></pre></div>
</div>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>...</dt>
+
+
+<dl><dt id="arg--">...<a class="anchor" aria-label="anchor" href="#arg--"></a></dt>
<dd><p>Included in the generic to allow for further arguments later. Therefore
this also had to be added to the specific methods.</p></dd>
-<dt>DT50</dt>
+<dt id="arg-dt-">DT50<a class="anchor" aria-label="anchor" href="#arg-dt-"></a></dt>
<dd><p>Half-life of the chemical in soil. Should be a field
half-life according to Gustafson (1989). However, leaching to the sub-soil
can not completely be excluded in field dissipation experiments and Gustafson
@@ -90,7 +83,7 @@ did not refer to any normalisation procedure, but says the field study should
be conducted under use conditions.</p></dd>
-<dt>Koc</dt>
+<dt id="arg-koc">Koc<a class="anchor" aria-label="anchor" href="#arg-koc"></a></dt>
<dd><p>The sorption constant normalised to organic carbon. Gustafson
does not mention the nonlinearity of the sorption constant commonly
found and usually described by Freundlich sorption, therefore it is
@@ -98,17 +91,17 @@ unclear at which reference concentration the Koc should be observed
(and if the reference concentration would be in soil or in porewater).</p></dd>
-<dt>chent</dt>
+<dt id="arg-chent">chent<a class="anchor" aria-label="anchor" href="#arg-chent"></a></dt>
<dd><p>If a chent is given with appropriate information present in its
chyaml field, this information is used, with defaults specified below.</p></dd>
-<dt>degradation_value</dt>
+<dt id="arg-degradation-value">degradation_value<a class="anchor" aria-label="anchor" href="#arg-degradation-value"></a></dt>
<dd><p>Which of the available degradation values should
be used?</p></dd>
-<dt>lab_field</dt>
+<dt id="arg-lab-field">lab_field<a class="anchor" aria-label="anchor" href="#arg-lab-field"></a></dt>
<dd><p>Should laboratory or field half-lives be used? This
defaults to lab in this implementation, in order to avoid
double-accounting for mobility. If comparability with the original GUS
@@ -116,11 +109,11 @@ values given by Gustafson (1989) is desired, non-normalised first-order
field half-lives obtained under actual use conditions should be used.</p></dd>
-<dt>redox</dt>
+<dt id="arg-redox">redox<a class="anchor" aria-label="anchor" href="#arg-redox"></a></dt>
<dd><p>Aerobic or anaerobic degradation data</p></dd>
-<dt>sorption_value</dt>
+<dt id="arg-sorption-value">sorption_value<a class="anchor" aria-label="anchor" href="#arg-sorption-value"></a></dt>
<dd><p>Which of the available sorption values should be used?
Defaults to Kfoc as this is what is generally available from the European
pesticide peer review process. These values generally use a reference
@@ -128,27 +121,25 @@ concentration of 1 mg/L in porewater, that means they would be expected to
be Koc values at a concentration of 1 mg/L in the water phase.</p></dd>
-<dt>degradation_aggregator</dt>
+<dt id="arg-degradation-aggregator">degradation_aggregator<a class="anchor" aria-label="anchor" href="#arg-degradation-aggregator"></a></dt>
<dd><p>Function for aggregating half-lives</p></dd>
-<dt>sorption_aggregator</dt>
+<dt id="arg-sorption-aggregator">sorption_aggregator<a class="anchor" aria-label="anchor" href="#arg-sorption-aggregator"></a></dt>
<dd><p>Function for aggregation Koc values</p></dd>
-<dt>x</dt>
+<dt id="arg-x">x<a class="anchor" aria-label="anchor" href="#arg-x"></a></dt>
<dd><p>An object of class GUS_result to be printed</p></dd>
-<dt>digits</dt>
+<dt id="arg-digits">digits<a class="anchor" aria-label="anchor" href="#arg-digits"></a></dt>
<dd><p>The number of digits used in the print method</p></dd>
</dl></div>
<div class="section level2">
<h2 id="value">Value<a class="anchor" aria-label="anchor" href="#value"></a></h2>
-
-
-<p>A list with the DT50 and Koc used as well as the resulting score
+ <p>A list with the DT50 and Koc used as well as the resulting score
of class GUS_result</p>
</div>
<div class="section level2">
@@ -162,23 +153,23 @@ toxicology and chemistry</em> <b>8</b>(4) 339–57.</p>
<p>Johannes Ranke</p>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
<footer><div class="pkgdown-footer-left">
- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
<div class="pkgdown-footer-right">
- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
</div>
</footer></div>
-
-
+
+
</body></html>
diff --git a/docs/reference/GUS.numeric.html b/docs/reference/GUS.numeric.html
new file mode 100644
index 0000000..15d3826
--- /dev/null
+++ b/docs/reference/GUS.numeric.html
@@ -0,0 +1,8 @@
+<html>
+ <head>
+ <meta http-equiv="refresh" content="0;URL=https://pkgdown.jrwb.de/pfm/reference/GUS.html" />
+ <meta name="robots" content="noindex">
+ <link rel="canonical" href="https://pkgdown.jrwb.de/pfm/reference/GUS.html">
+ </head>
+</html>
+
diff --git a/docs/reference/PEC_soil.html b/docs/reference/PEC_soil.html
index 46c92f4..e86dd6d 100644
--- a/docs/reference/PEC_soil.html
+++ b/docs/reference/PEC_soil.html
@@ -1,51 +1,42 @@
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-and in the EFSA guidance on PEC soil calculations (EFSA, 2015, 2017)."><title>Calculate predicted environmental concentrations in soil — PEC_soil • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate predicted environmental concentrations in soil — PEC_soil"><meta property="og:description" content="This is a basic calculation of a contaminant concentration in bulk soil
+and in the EFSA guidance on PEC soil calculations (EFSA, 2015, 2017)."><meta property="og:description" content="This is a basic calculation of a contaminant concentration in bulk soil
based on complete, instantaneous mixing. If an interval is given, an
attempt is made at calculating a long term maximum concentration using
the concepts layed out in the PPR panel opinion (EFSA PPR panel 2012
-and in the EFSA guidance on PEC soil calculations (EFSA, 2015, 2017)."><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
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+and in the EFSA guidance on PEC soil calculations (EFSA, 2015, 2017)."></head><body>
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- <img src="" class="logo" alt=""><h1>Calculate predicted environmental concentrations in soil</h1>
+
+ <h1>Calculate predicted environmental concentrations in soil</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_soil.R" class="external-link"><code>R/PEC_soil.R</code></a></small>
<div class="d-none name"><code>PEC_soil.Rd</code></div>
</div>
@@ -88,99 +79,101 @@ and in the EFSA guidance on PEC soil calculations (EFSA, 2015, 2017).</p>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>rate</dt>
+
+
+<dl><dt id="arg-rate">rate<a class="anchor" aria-label="anchor" href="#arg-rate"></a></dt>
<dd><p>Application rate in units specified below</p></dd>
-<dt>rate_units</dt>
+<dt id="arg-rate-units">rate_units<a class="anchor" aria-label="anchor" href="#arg-rate-units"></a></dt>
<dd><p>Defaults to g/ha</p></dd>
-<dt>interception</dt>
+<dt id="arg-interception">interception<a class="anchor" aria-label="anchor" href="#arg-interception"></a></dt>
<dd><p>The fraction of the application rate that does not reach the soil</p></dd>
-<dt>mixing_depth</dt>
+<dt id="arg-mixing-depth">mixing_depth<a class="anchor" aria-label="anchor" href="#arg-mixing-depth"></a></dt>
<dd><p>Mixing depth in cm</p></dd>
-<dt>PEC_units</dt>
+<dt id="arg-pec-units">PEC_units<a class="anchor" aria-label="anchor" href="#arg-pec-units"></a></dt>
<dd><p>Requested units for the calculated PEC. Only mg/kg currently supported</p></dd>
-<dt>PEC_pw_units</dt>
+<dt id="arg-pec-pw-units">PEC_pw_units<a class="anchor" aria-label="anchor" href="#arg-pec-pw-units"></a></dt>
<dd><p>Only mg/L currently supported</p></dd>
-<dt>interval</dt>
+<dt id="arg-interval">interval<a class="anchor" aria-label="anchor" href="#arg-interval"></a></dt>
<dd><p>Period of the deeper mixing. The default is NA, i.e. no
deeper mixing. For annual deeper mixing, set this to 365 when degradation
units are in days</p></dd>
-<dt>n_periods</dt>
+<dt id="arg-n-periods">n_periods<a class="anchor" aria-label="anchor" href="#arg-n-periods"></a></dt>
<dd><p>Number of periods to be considered for long term PEC calculations</p></dd>
-<dt>tillage_depth</dt>
+<dt id="arg-tillage-depth">tillage_depth<a class="anchor" aria-label="anchor" href="#arg-tillage-depth"></a></dt>
<dd><p>Periodic (see interval) deeper mixing in cm</p></dd>
-<dt>leaching_depth</dt>
+<dt id="arg-leaching-depth">leaching_depth<a class="anchor" aria-label="anchor" href="#arg-leaching-depth"></a></dt>
<dd><p>EFSA (2017) uses the mixing depth (ecotoxicological
evaluation depth) to calculate leaching for annual crops where tillage
takes place. By default, losses from the layer down to the tillage
depth are taken into account in this implementation.</p></dd>
-<dt>crop</dt>
+<dt id="arg-crop">crop<a class="anchor" aria-label="anchor" href="#arg-crop"></a></dt>
<dd><p>Ignored for scenarios other than EFSA_2017. Only annual crops
are supported when these scenarios are used. Only crops with a single cropping
cycle per year are currently supported.</p></dd>
-<dt>cultivation</dt>
+<dt id="arg-cultivation">cultivation<a class="anchor" aria-label="anchor" href="#arg-cultivation"></a></dt>
<dd><p>Does mechanical cultivation in the sense of EFSA (2017)
take place, i.e. twice a year to a depth of 5 cm? Ignored for scenarios
other than EFSA_2017</p></dd>
-<dt>chent</dt>
+<dt id="arg-chent">chent<a class="anchor" aria-label="anchor" href="#arg-chent"></a></dt>
<dd><p>An optional chent object holding substance specific information. Can
also be a name for the substance as a character string</p></dd>
-<dt>DT50</dt>
+<dt id="arg-dt-">DT50<a class="anchor" aria-label="anchor" href="#arg-dt-"></a></dt>
<dd><p>If specified, overrides soil DT50 endpoints from a chent object
If DT50 is not specified here and not available from the chent object, zero
degradation is assumed</p></dd>
-<dt>FOMC</dt>
+<dt id="arg-fomc">FOMC<a class="anchor" aria-label="anchor" href="#arg-fomc"></a></dt>
<dd><p>If specified, it should be a named numeric vector containing
the FOMC parameters alpha and beta. This overrides any other degradation
endpoints, and the degradation during the interval and after the maximum PEC
is calculated using these parameters without temperature correction</p></dd>
-<dt>Koc</dt>
+<dt id="arg-koc">Koc<a class="anchor" aria-label="anchor" href="#arg-koc"></a></dt>
<dd><p>If specified, overrides Koc endpoints from a chent object</p></dd>
-<dt>Kom</dt>
+<dt id="arg-kom">Kom<a class="anchor" aria-label="anchor" href="#arg-kom"></a></dt>
<dd><p>Calculated from Koc by default, but can explicitly be specified
as Kom here</p></dd>
-<dt>t_avg</dt>
+<dt id="arg-t-avg">t_avg<a class="anchor" aria-label="anchor" href="#arg-t-avg"></a></dt>
<dd><p>Averaging times for time weighted average concentrations</p></dd>
-<dt>t_act</dt>
+<dt id="arg-t-act">t_act<a class="anchor" aria-label="anchor" href="#arg-t-act"></a></dt>
<dd><p>Time series for actual concentrations</p></dd>
-<dt>scenarios</dt>
+<dt id="arg-scenarios">scenarios<a class="anchor" aria-label="anchor" href="#arg-scenarios"></a></dt>
<dd><p>If this is 'default', the DT50 will be used without correction
and soil properties as specified in the REACH guidance (R.16, Table
R.16-9) are used for porewater PEC calculations. If this is "EFSA_2015",
@@ -190,12 +183,12 @@ and corrected using an Arrhenius activation energy of 65.4 kJ/mol. Also
model and scenario adjustment factors from the EFSA guidance are used.</p></dd>
-<dt>leaching</dt>
+<dt id="arg-leaching">leaching<a class="anchor" aria-label="anchor" href="#arg-leaching"></a></dt>
<dd><p>Should leaching be taken into account? The default is FALSE,
except when the EFSA_2017 scenarios are used.</p></dd>
-<dt>porewater</dt>
+<dt id="arg-porewater">porewater<a class="anchor" aria-label="anchor" href="#arg-porewater"></a></dt>
<dd><p>Should equilibrium porewater concentrations be estimated
based on Kom and the organic carbon fraction of the soil instead of total
soil concentrations? Based on equation (7) given in the PPR panel opinion
@@ -205,9 +198,7 @@ p. 13).</p></dd>
</dl></div>
<div class="section level2">
<h2 id="value">Value<a class="anchor" aria-label="anchor" href="#value"></a></h2>
-
-
-<p>The predicted concentration in soil</p>
+ <p>The predicted concentration in soil</p>
</div>
<div class="section level2">
<h2 id="details">Details<a class="anchor" aria-label="anchor" href="#details"></a></h2>
@@ -305,23 +296,23 @@ doi:10.2903/j.efsa.2015.4093</p>
<span class="r-in"><span> Kom <span class="op">=</span> <span class="fl">100</span>, scenarios <span class="op">=</span> <span class="st">"EFSA_2015"</span>, porewater <span class="op">=</span> <span class="cn">TRUE</span><span class="op">)</span></span></span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
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- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
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- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
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diff --git a/docs/reference/PEC_sw_drainage_UK.html b/docs/reference/PEC_sw_drainage_UK.html
index 3996f9c..d8b885f 100644
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+++ b/docs/reference/PEC_sw_drainage_UK.html
@@ -1,45 +1,36 @@
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+<li class="nav-item"><a class="external-link nav-link" href="https://github.com/jranke/pfm/" aria-label="GitHub"><span class="fa fab fa-github fa-lg"></span></a></li>
</ul></div>
-
+
</div>
</nav><div class="container template-reference-topic">
<div class="row">
<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Calculate initial predicted environmental concentrations in surface water due to drainage using the UK method</h1>
+
+ <h1>Calculate initial predicted environmental concentrations in surface water due to drainage using the UK method</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_drainage_UK.R" class="external-link"><code>R/PEC_sw_drainage_UK.R</code></a></small>
<div class="d-none name"><code>PEC_sw_drainage_UK.Rd</code></div>
</div>
@@ -64,40 +55,40 @@ published on the CRC website</p>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>rate</dt>
+
+
+<dl><dt id="arg-rate">rate<a class="anchor" aria-label="anchor" href="#arg-rate"></a></dt>
<dd><p>Application rate in g/ha</p></dd>
-<dt>interception</dt>
+<dt id="arg-interception">interception<a class="anchor" aria-label="anchor" href="#arg-interception"></a></dt>
<dd><p>The fraction of the application rate that does not reach the soil</p></dd>
-<dt>Koc</dt>
+<dt id="arg-koc">Koc<a class="anchor" aria-label="anchor" href="#arg-koc"></a></dt>
<dd><p>The sorption coefficient normalised to organic carbon in L/kg</p></dd>
-<dt>latest_application</dt>
+<dt id="arg-latest-application">latest_application<a class="anchor" aria-label="anchor" href="#arg-latest-application"></a></dt>
<dd><p>Latest application date, formatted as e.g. "01 July"</p></dd>
-<dt>soil_DT50</dt>
+<dt id="arg-soil-dt-">soil_DT50<a class="anchor" aria-label="anchor" href="#arg-soil-dt-"></a></dt>
<dd><p>Soil degradation half-life, if SFO kinetics are to be used</p></dd>
-<dt>model</dt>
+<dt id="arg-model">model<a class="anchor" aria-label="anchor" href="#arg-model"></a></dt>
<dd><p>The soil degradation model to be used. Either one of "FOMC",
"DFOP", "HS", or "IORE", or an mkinmod object</p></dd>
-<dt>model_parms</dt>
+<dt id="arg-model-parms">model_parms<a class="anchor" aria-label="anchor" href="#arg-model-parms"></a></dt>
<dd><p>A named numeric vector containing the model parameters</p></dd>
</dl></div>
<div class="section level2">
<h2 id="value">Value<a class="anchor" aria-label="anchor" href="#value"></a></h2>
-
-
-<p>The predicted concentration in surface water in µg/L</p>
+ <p>The predicted concentration in surface water in µg/L</p>
</div>
<div class="section level2">
<h2 id="references">References<a class="anchor" aria-label="anchor" href="#references"></a></h2>
@@ -120,23 +111,23 @@ accessed 2019-09-27</p>
<span class="r-out co"><span class="r-pr">#&gt;</span> [1] 8.076923</span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
<footer><div class="pkgdown-footer-left">
- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
<div class="pkgdown-footer-right">
- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
</div>
</footer></div>
-
-
+
+
</body></html>
diff --git a/docs/reference/PEC_sw_drift.html b/docs/reference/PEC_sw_drift.html
index 1fe8465..2bd66df 100644
--- a/docs/reference/PEC_sw_drift.html
+++ b/docs/reference/PEC_sw_drift.html
@@ -1,47 +1,38 @@
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+with input via spray drift."><meta property="og:description" content="This is a basic, vectorised form of a simple calculation of a contaminant
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<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Calculate predicted environmental concentrations in surface water due to drift</h1>
+
+ <h1>Calculate predicted environmental concentrations in surface water due to drift</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_drift.R" class="external-link"><code>R/PEC_sw_drift.R</code></a></small>
<div class="d-none name"><code>PEC_sw_drift.Rd</code></div>
</div>
@@ -57,16 +48,16 @@ with input via spray drift.</p>
<div class="sourceCode"><pre class="sourceCode r"><code><span><span class="fu">PEC_sw_drift</span><span class="op">(</span></span>
<span> <span class="va">rate</span>,</span>
<span> applications <span class="op">=</span> <span class="fl">1</span>,</span>
-<span> water_depth <span class="op">=</span> <span class="fl">30</span>,</span>
+<span> water_depth <span class="op">=</span> <span class="fu">as_units</span><span class="op">(</span><span class="st">"30 cm"</span><span class="op">)</span>,</span>
<span> drift_percentages <span class="op">=</span> <span class="cn">NULL</span>,</span>
<span> drift_data <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="st">"JKI"</span>, <span class="st">"RF"</span><span class="op">)</span>,</span>
<span> crop_group_JKI <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="st">"Ackerbau"</span>, <span class="st">"Obstbau frueh"</span>, <span class="st">"Obstbau spaet"</span>, <span class="st">"Weinbau frueh"</span>,</span>
<span> <span class="st">"Weinbau spaet"</span>, <span class="st">"Hopfenbau"</span>, <span class="st">"Flaechenkulturen &gt; 900 l/ha"</span>, <span class="st">"Gleisanlagen"</span><span class="op">)</span>,</span>
-<span> crop_group_focus <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="st">"arable"</span>, <span class="st">"hops"</span>, <span class="st">"vines, late"</span>, <span class="st">"vines, early"</span>, <span class="st">"fruit, late"</span>,</span>
+<span> crop_group_RF <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="st">"arable"</span>, <span class="st">"hops"</span>, <span class="st">"vines, late"</span>, <span class="st">"vines, early"</span>, <span class="st">"fruit, late"</span>,</span>
<span> <span class="st">"fruit, early"</span>, <span class="st">"aerial"</span><span class="op">)</span>,</span>
<span> distances <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="fl">1</span>, <span class="fl">5</span>, <span class="fl">10</span>, <span class="fl">20</span><span class="op">)</span>,</span>
<span> formula <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="st">"Rautmann"</span>, <span class="st">"FOCUS"</span><span class="op">)</span>,</span>
-<span> water_width <span class="op">=</span> <span class="fl">100</span>,</span>
+<span> water_width <span class="op">=</span> <span class="fu">as_units</span><span class="op">(</span><span class="st">"100 cm"</span><span class="op">)</span>,</span>
<span> side_angle <span class="op">=</span> <span class="fl">90</span>,</span>
<span> rate_units <span class="op">=</span> <span class="st">"g/ha"</span>,</span>
<span> PEC_units <span class="op">=</span> <span class="st">"µg/L"</span></span>
@@ -75,71 +66,78 @@ with input via spray drift.</p>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>rate</dt>
-<dd><p>Application rate in units specified below</p></dd>
-<dt>applications</dt>
+<dl><dt id="arg-rate">rate<a class="anchor" aria-label="anchor" href="#arg-rate"></a></dt>
+<dd><p>Application rate in units specified below, or with units defined via the
+<code>units</code> package.</p></dd>
+
+
+<dt id="arg-applications">applications<a class="anchor" aria-label="anchor" href="#arg-applications"></a></dt>
<dd><p>Number of applications for selection of drift percentile</p></dd>
-<dt>water_depth</dt>
+<dt id="arg-water-depth">water_depth<a class="anchor" aria-label="anchor" href="#arg-water-depth"></a></dt>
<dd><p>Depth of the water body in cm</p></dd>
-<dt>drift_percentages</dt>
+<dt id="arg-drift-percentages">drift_percentages<a class="anchor" aria-label="anchor" href="#arg-drift-percentages"></a></dt>
<dd><p>Percentage drift values for which to calculate PECsw.
Overrides 'drift_data' and 'distances' if not NULL.</p></dd>
-<dt>drift_data</dt>
+<dt id="arg-drift-data">drift_data<a class="anchor" aria-label="anchor" href="#arg-drift-data"></a></dt>
<dd><p>Source of drift percentage data. If 'JKI', the <a href="drift_data_JKI.html">drift_data_JKI</a>
included in the package is used. If 'RF', the Rautmann drift data are calculated
either in the original form or integrated over the width of the water body, depending
on the 'formula' argument.</p></dd>
-<dt>crop_group_JKI</dt>
+<dt id="arg-crop-group-jki">crop_group_JKI<a class="anchor" aria-label="anchor" href="#arg-crop-group-jki"></a></dt>
<dd><p>When using the 'JKI' drift data, one of the German names
-as used in <a href="drift_parameters_focus.html">drift_parameters_focus</a>.</p></dd>
+as used in <a href="drift_parameters_focus.html">drift_parameters_focus</a>. Will only be used if drift_data is 'JKI'.</p></dd>
-<dt>crop_group_focus</dt>
+<dt id="arg-crop-group-rf">crop_group_RF<a class="anchor" aria-label="anchor" href="#arg-crop-group-rf"></a></dt>
<dd><p>One of the crop groups as used in <a href="drift_parameters_focus.html">drift_parameters_focus</a></p></dd>
-<dt>distances</dt>
+<dt id="arg-distances">distances<a class="anchor" aria-label="anchor" href="#arg-distances"></a></dt>
<dd><p>The distances in m for which to get PEC values</p></dd>
-<dt>formula</dt>
+<dt id="arg-formula">formula<a class="anchor" aria-label="anchor" href="#arg-formula"></a></dt>
<dd><p>By default, the original Rautmann formula is used. If you
specify "FOCUS", mean drift input over the width of the water body is
calculated as described in Chapter 5.4.5 of the FOCUS surface water guidance</p></dd>
-<dt>water_width</dt>
+<dt id="arg-water-width">water_width<a class="anchor" aria-label="anchor" href="#arg-water-width"></a></dt>
<dd><p>Width of the water body in cm</p></dd>
-<dt>side_angle</dt>
+<dt id="arg-side-angle">side_angle<a class="anchor" aria-label="anchor" href="#arg-side-angle"></a></dt>
<dd><p>The angle of the side of the water relative to the bottom which
is assumed to be horizontal, in degrees. The SYNOPS model assumes 45 degrees here.</p></dd>
-<dt>rate_units</dt>
-<dd><p>Defaults to g/ha</p></dd>
+<dt id="arg-rate-units">rate_units<a class="anchor" aria-label="anchor" href="#arg-rate-units"></a></dt>
+<dd><p>Defaults to g/ha. For backwards compatibility, only used
+if the specified rate does not have <a href="https://r-quantities.github.io/units/reference/units.html" class="external-link">units::units</a>].</p></dd>
-<dt>PEC_units</dt>
+<dt id="arg-pec-units">PEC_units<a class="anchor" aria-label="anchor" href="#arg-pec-units"></a></dt>
<dd><p>Requested units for the calculated PEC. Only µg/L currently supported</p></dd>
</dl></div>
<div class="section level2">
<h2 id="value">Value<a class="anchor" aria-label="anchor" href="#value"></a></h2>
-
-
-<p>The predicted concentration in surface water</p>
+ <p>The predicted concentration in surface water</p>
+ </div>
+ <div class="section level2">
+ <h2 id="details">Details<a class="anchor" aria-label="anchor" href="#details"></a></h2>
+ <p>It is recommened to specify the arguments <code>rate</code>, <code>water_depth</code> and
+<code>water_width</code> using <a href="https://r-quantities.github.io/units/reference/units.html" class="external-link">units::units</a> from the <code>units</code> package.</p>
</div>
<div class="section level2">
<h2 id="see-also">See also<a class="anchor" aria-label="anchor" href="#see-also"></a></h2>
@@ -153,24 +151,28 @@ is assumed to be horizontal, in degrees. The SYNOPS model assumes 45 degrees her
<div class="section level2">
<h2 id="ref-examples">Examples<a class="anchor" aria-label="anchor" href="#ref-examples"></a></h2>
<div class="sourceCode"><pre class="sourceCode r"><code><span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m 5 m 10 m 20 m </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.92333333 0.19000000 0.09666667 0.05000000 </span>
<span class="r-in"><span><span class="co"># Alternatively, we can use the formula for a single application to</span></span></span>
<span class="r-in"><span><span class="co"># "Ackerbau" from the paper</span></span></span>
<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, drift_data <span class="op">=</span> <span class="st">"RF"</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m 5 m 10 m 20 m </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.91976667 0.19064473 0.09680051 0.04915079 </span>
<span class="r-in"><span></span></span>
<span class="r-in"><span><span class="co"># This makes it possible to also use different distances</span></span></span>
<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, distances <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="fl">1</span>, <span class="fl">3</span>, <span class="fl">5</span>, <span class="fl">6</span>, <span class="fl">10</span>, <span class="fl">20</span>, <span class="fl">50</span>, <span class="fl">100</span><span class="op">)</span>, drift_data <span class="op">=</span> <span class="st">"RF"</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m 3 m 5 m 6 m 10 m 20 m 50 m </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.91976667 0.31415827 0.19064473 0.15951494 0.09680051 0.04915079 0.02006434 </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 100 m </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.01018774 </span>
<span class="r-in"><span></span></span>
<span class="r-in"><span><span class="co"># or consider aerial application</span></span></span>
-<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, distances <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="fl">1</span>, <span class="fl">3</span>, <span class="fl">5</span>, <span class="fl">6</span>, <span class="fl">10</span>, <span class="fl">20</span>, <span class="fl">50</span>, <span class="fl">100</span><span class="op">)</span>, drift_data <span class="op">=</span> <span class="st">"RF"</span>, </span></span>
-<span class="r-in"><span> crop_group_focus <span class="op">=</span> <span class="st">"aerial"</span><span class="op">)</span></span></span>
+<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, distances <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="fl">1</span>, <span class="fl">3</span>, <span class="fl">5</span>, <span class="fl">6</span>, <span class="fl">10</span>, <span class="fl">20</span>, <span class="fl">50</span>, <span class="fl">100</span><span class="op">)</span>, drift_data <span class="op">=</span> <span class="st">"RF"</span>,</span></span>
+<span class="r-in"><span> crop_group_RF <span class="op">=</span> <span class="st">"aerial"</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m 3 m 5 m 6 m 10 m 20 m 50 m </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 16.8233333 11.0585820 9.0986174 8.4866460 6.9825178 4.7004640 1.8820816 </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 100 m </span>
@@ -178,47 +180,53 @@ is assumed to be horizontal, in degrees. The SYNOPS model assumes 45 degrees her
<span class="r-in"><span></span></span>
<span class="r-in"><span><span class="co"># Using custom drift percentages is also supported</span></span></span>
<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, drift_percentages <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="fl">2.77</span>, <span class="fl">0.95</span>, <span class="fl">0.57</span>, <span class="fl">0.48</span>, <span class="fl">0.29</span>, <span class="fl">0.15</span>, <span class="fl">0.06</span>, <span class="fl">0.03</span><span class="op">)</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 2.77 % 0.95 % 0.57 % 0.48 % 0.29 % 0.15 % 0.06 % </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.92333333 0.31666667 0.19000000 0.16000000 0.09666667 0.05000000 0.02000000 </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.03 % </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.01000000 </span>
<span class="r-in"><span></span></span>
-<span class="r-in"><span><span class="co"># The influence of assuming a 45° angle of the sides of the waterbody and the width of the </span></span></span>
+<span class="r-in"><span><span class="co"># The influence of assuming a 45° angle of the sides of the waterbody and the width of the</span></span></span>
<span class="r-in"><span><span class="co"># waterbody can be illustrated</span></span></span>
<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m 5 m 10 m 20 m </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.92333333 0.19000000 0.09666667 0.05000000 </span>
<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, drift_data <span class="op">=</span> <span class="st">"RF"</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m 5 m 10 m 20 m </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.91976667 0.19064473 0.09680051 0.04915079 </span>
<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, drift_data <span class="op">=</span> <span class="st">"RF"</span>, formula <span class="op">=</span> <span class="st">"FOCUS"</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m 5 m 10 m 20 m </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.64246407 0.17414541 0.09235842 0.04798749 </span>
<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, drift_data <span class="op">=</span> <span class="st">"RF"</span>, formula <span class="op">=</span> <span class="st">"FOCUS"</span>, side_angle <span class="op">=</span> <span class="fl">45</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m 5 m 10 m 20 m </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.91780582 0.24877916 0.13194060 0.06855356 </span>
<span class="r-in"><span><span class="fu">PEC_sw_drift</span><span class="op">(</span><span class="fl">100</span>, drift_data <span class="op">=</span> <span class="st">"RF"</span>, formula <span class="op">=</span> <span class="st">"FOCUS"</span>, side_angle <span class="op">=</span> <span class="fl">45</span>, water_width <span class="op">=</span> <span class="fl">200</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> Units: [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m 5 m 10 m 20 m </span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 0.30085000 0.09468652 0.05201349 0.02758547 </span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 0.60169999 0.18937304 0.10402698 0.05517095 </span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
<footer><div class="pkgdown-footer-left">
- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
<div class="pkgdown-footer-right">
- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
</div>
</footer></div>
-
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+
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</body></html>
diff --git a/docs/reference/PEC_sw_exposit_drainage.html b/docs/reference/PEC_sw_exposit_drainage.html
index 5da26c6..a2dab7e 100644
--- a/docs/reference/PEC_sw_exposit_drainage.html
+++ b/docs/reference/PEC_sw_exposit_drainage.html
@@ -1,56 +1,47 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content='This is a reimplementation of the calculation described in the Exposit 3.02 spreadsheet file,
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Calculate PEC surface water due to drainage as in Exposit 3 — PEC_sw_exposit_drainage • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate PEC surface water due to drainage as in Exposit 3 — PEC_sw_exposit_drainage"><meta name="description" content='This is a reimplementation of the calculation described in the Exposit 3.02 spreadsheet file,
in the worksheet "Konzept Drainage". Although there are four groups of
compounds ("Gefährdungsgruppen"), only one distinction is made in the
calculations, between compounds with low mobility (group 1) and compounds
with modest to high mobility (groups 2, 3 and 4). In this implementation,
the group is derived only from the Koc, if not given explicitly. For
-details, see the discussion of the function arguments below.'><title>Calculate PEC surface water due to drainage as in Exposit 3 — PEC_sw_exposit_drainage • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate PEC surface water due to drainage as in Exposit 3 — PEC_sw_exposit_drainage"><meta property="og:description" content='This is a reimplementation of the calculation described in the Exposit 3.02 spreadsheet file,
+details, see the discussion of the function arguments below.'><meta property="og:description" content='This is a reimplementation of the calculation described in the Exposit 3.02 spreadsheet file,
in the worksheet "Konzept Drainage". Although there are four groups of
compounds ("Gefährdungsgruppen"), only one distinction is made in the
calculations, between compounds with low mobility (group 1) and compounds
with modest to high mobility (groups 2, 3 and 4). In this implementation,
the group is derived only from the Koc, if not given explicitly. For
-details, see the discussion of the function arguments below.'><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
-<script src="https://oss.maxcdn.com/html5shiv/3.7.3/html5shiv.min.js"></script>
-<script src="https://oss.maxcdn.com/respond/1.4.2/respond.min.js"></script>
-<![endif]--></head><body>
+details, see the discussion of the function arguments below.'></head><body>
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</nav><div class="container template-reference-topic">
<div class="row">
<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Calculate PEC surface water due to drainage as in Exposit 3</h1>
- <small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_exposit_runoff.R" class="external-link"><code>R/PEC_sw_exposit_runoff.R</code></a></small>
+
+ <h1>Calculate PEC surface water due to drainage as in Exposit 3</h1>
+ <small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_exposit.R" class="external-link"><code>R/PEC_sw_exposit.R</code></a></small>
<div class="d-none name"><code>PEC_sw_exposit_drainage.Rd</code></div>
</div>
@@ -86,57 +77,57 @@ details, see the discussion of the function arguments below.</p>
</div>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>rate</dt>
+
+
+<dl><dt id="arg-rate">rate<a class="anchor" aria-label="anchor" href="#arg-rate"></a></dt>
<dd><p>The application rate in g/ha</p></dd>
-<dt>interception</dt>
+<dt id="arg-interception">interception<a class="anchor" aria-label="anchor" href="#arg-interception"></a></dt>
<dd><p>The fraction intercepted by the crop</p></dd>
-<dt>Koc</dt>
+<dt id="arg-koc">Koc<a class="anchor" aria-label="anchor" href="#arg-koc"></a></dt>
<dd><p>The sorption coefficient to soil organic carbon used to determine the mobility. A trigger
value of 550 L/kg is used in order to decide if Koc &gt;&gt; 500.</p></dd>
-<dt>mobility</dt>
+<dt id="arg-mobility">mobility<a class="anchor" aria-label="anchor" href="#arg-mobility"></a></dt>
<dd><p>Overrides what is determined from the Koc.</p></dd>
-<dt>DT50</dt>
+<dt id="arg-dt-">DT50<a class="anchor" aria-label="anchor" href="#arg-dt-"></a></dt>
<dd><p>The soil half-life in days</p></dd>
-<dt>t_drainage</dt>
+<dt id="arg-t-drainage">t_drainage<a class="anchor" aria-label="anchor" href="#arg-t-drainage"></a></dt>
<dd><p>The time between application and the drainage event, where degradation occurs, in days</p></dd>
-<dt>V_ditch</dt>
+<dt id="arg-v-ditch">V_ditch<a class="anchor" aria-label="anchor" href="#arg-v-ditch"></a></dt>
<dd><p>The volume of the ditch is assumed to be 1 m * 100 m * 30 cm = 30 m3</p></dd>
-<dt>V_drainage</dt>
+<dt id="arg-v-drainage">V_drainage<a class="anchor" aria-label="anchor" href="#arg-v-drainage"></a></dt>
<dd><p>The drainage volume, equivalent to 1 mm precipitation on 1 ha for spring/summer or 10 mm for
autumn/winter/early spring.</p></dd>
-<dt>dilution</dt>
+<dt id="arg-dilution">dilution<a class="anchor" aria-label="anchor" href="#arg-dilution"></a></dt>
<dd><p>The dilution factor</p></dd>
</dl></div>
<div class="section level2">
<h2 id="value">Value<a class="anchor" aria-label="anchor" href="#value"></a></h2>
-
-
-<p>A list containing the following components</p><dl><dt>perc_runoff</dt>
-<dd><p>The runoff percentages for dissolved and bound substance</p></dd>
+ <p>A list containing the following components</p><dl><dt>perc_drainage_total</dt>
+<dd><p>Gesamtaustrag (total fraction of the residue drained)</p></dd>
-<dt>runoff</dt>
-<dd><p>A matrix containing dissolved and bound input for the different distances</p></dd>
+<dt>perc_peak</dt>
+<dd><p>Stoßbelastung (fraction drained at event)</p></dd>
-<dt>PEC_sw_runoff</dt>
-<dd><p>A matrix containing PEC values for dissolved and bound substance
-for the different distances. If the rate was given in g/ha, the PECsw are in microg/L.</p></dd>
+<dt>PEC_sw_drainage</dt>
+<dd><p>A matrix containing PEC values for the spring and autumn
+scenarios. If the rate was given in g/ha, the PECsw are in microg/L.</p></dd>
</dl></div>
@@ -162,23 +153,23 @@ for the different distances. If the rate was given in g/ha, the PECsw are in mic
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
<footer><div class="pkgdown-footer-left">
- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
<div class="pkgdown-footer-right">
- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
</div>
</footer></div>
-
-
+
+
</body></html>
diff --git a/docs/reference/PEC_sw_exposit_runoff.html b/docs/reference/PEC_sw_exposit_runoff.html
index 21731f3..cd57c99 100644
--- a/docs/reference/PEC_sw_exposit_runoff.html
+++ b/docs/reference/PEC_sw_exposit_runoff.html
@@ -1,46 +1,37 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content='This is a reimplementation of the calculation described in the Exposit 3.02 spreadsheet file,
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+in the worksheet "Konzept Runoff".'><meta property="og:description" content='This is a reimplementation of the calculation described in the Exposit 3.02 spreadsheet file,
+in the worksheet "Konzept Runoff".'></head><body>
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- <img src="" class="logo" alt=""><h1>Calculate PEC surface water due to runoff and erosion as in Exposit 3</h1>
- <small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_exposit_runoff.R" class="external-link"><code>R/PEC_sw_exposit_runoff.R</code></a></small>
+
+ <h1>Calculate PEC surface water due to runoff and erosion as in Exposit 3</h1>
+ <small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_exposit.R" class="external-link"><code>R/PEC_sw_exposit.R</code></a></small>
<div class="d-none name"><code>PEC_sw_exposit_runoff.Rd</code></div>
</div>
@@ -55,11 +46,11 @@ in the worksheet "Konzept Runoff".</p>
<span> <span class="va">rate</span>,</span>
<span> interception <span class="op">=</span> <span class="fl">0</span>,</span>
<span> <span class="va">Koc</span>,</span>
-<span> DT50 <span class="op">=</span> <span class="cn">Inf</span>,</span>
-<span> t_runoff <span class="op">=</span> <span class="fl">3</span>,</span>
+<span> DT50 <span class="op">=</span> <span class="fu">set_units</span><span class="op">(</span><span class="cn">Inf</span>, <span class="st">"d"</span><span class="op">)</span>,</span>
+<span> t_runoff <span class="op">=</span> <span class="fu">set_units</span><span class="op">(</span><span class="fl">3</span>, <span class="st">"days"</span><span class="op">)</span>,</span>
<span> exposit_reduction_version <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="st">"3.02"</span>, <span class="st">"3.01a"</span>, <span class="st">"3.01a2"</span>, <span class="st">"2.0"</span><span class="op">)</span>,</span>
-<span> V_ditch <span class="op">=</span> <span class="fl">30</span>,</span>
-<span> V_event <span class="op">=</span> <span class="fl">100</span>,</span>
+<span> V_ditch <span class="op">=</span> <span class="fu">set_units</span><span class="op">(</span><span class="fl">30</span>, <span class="st">"m3"</span><span class="op">)</span>,</span>
+<span> V_event <span class="op">=</span> <span class="fu">set_units</span><span class="op">(</span><span class="fl">100</span>, <span class="st">"m3"</span><span class="op">)</span>,</span>
<span> dilution <span class="op">=</span> <span class="fl">2</span></span>
<span><span class="op">)</span></span></code></pre></div>
</div>
@@ -71,27 +62,29 @@ in the worksheet "Konzept Runoff".</p>
</div>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>rate</dt>
+
+
+<dl><dt id="arg-rate">rate<a class="anchor" aria-label="anchor" href="#arg-rate"></a></dt>
<dd><p>The application rate in g/ha</p></dd>
-<dt>interception</dt>
+<dt id="arg-interception">interception<a class="anchor" aria-label="anchor" href="#arg-interception"></a></dt>
<dd><p>The fraction intercepted by the crop</p></dd>
-<dt>Koc</dt>
+<dt id="arg-koc">Koc<a class="anchor" aria-label="anchor" href="#arg-koc"></a></dt>
<dd><p>The sorption coefficient to soil organic carbon</p></dd>
-<dt>DT50</dt>
+<dt id="arg-dt-">DT50<a class="anchor" aria-label="anchor" href="#arg-dt-"></a></dt>
<dd><p>The soil half-life in days</p></dd>
-<dt>t_runoff</dt>
+<dt id="arg-t-runoff">t_runoff<a class="anchor" aria-label="anchor" href="#arg-t-runoff"></a></dt>
<dd><p>The time between application and the runoff event, where degradation occurs, in days</p></dd>
-<dt>exposit_reduction_version</dt>
+<dt id="arg-exposit-reduction-version">exposit_reduction_version<a class="anchor" aria-label="anchor" href="#arg-exposit-reduction-version"></a></dt>
<dd><p>The version of the reduction factors to be used. "3.02" is the current
version used in Germany, "3.01a" is the version with additional percentages for 3 m and 6 m buffer
zones used in Switzerland. "3.01a2" is a version introduced for consistency with previous calculations
@@ -99,23 +92,21 @@ performed for a 3 m buffer zone in Switzerland, with the same reduction being ap
and the bound fraction.</p></dd>
-<dt>V_ditch</dt>
+<dt id="arg-v-ditch">V_ditch<a class="anchor" aria-label="anchor" href="#arg-v-ditch"></a></dt>
<dd><p>The volume of the ditch is assumed to be 1 m * 100 m * 30 cm = 30 m3</p></dd>
-<dt>V_event</dt>
+<dt id="arg-v-event">V_event<a class="anchor" aria-label="anchor" href="#arg-v-event"></a></dt>
<dd><p>The unreduced runoff volume, equivalent to 10 mm precipitation on 1 ha</p></dd>
-<dt>dilution</dt>
+<dt id="arg-dilution">dilution<a class="anchor" aria-label="anchor" href="#arg-dilution"></a></dt>
<dd><p>The dilution factor</p></dd>
</dl></div>
<div class="section level2">
<h2 id="value">Value<a class="anchor" aria-label="anchor" href="#value"></a></h2>
-
-
-<p>A list containing the following components</p><dl><dt>perc_runoff</dt>
+ <p>A list containing the following components</p><dl><dt>perc_runoff</dt>
<dd><p>The runoff percentages for dissolved and bound substance</p></dd>
<dt>runoff</dt>
@@ -128,6 +119,11 @@ for the different distances. If the rate was given in g/ha, the PECsw are in mic
</dl></div>
<div class="section level2">
+ <h2 id="details">Details<a class="anchor" aria-label="anchor" href="#details"></a></h2>
+ <p>It is recommened to specify the arguments <code>rate</code>, <code>Koc</code>, <code>DT50</code>, <code>t_runoff</code>, <code>V_ditch</code> and <code>V_event</code>
+using <a href="https://r-quantities.github.io/units/reference/units.html" class="external-link">units::units</a> from the <code>units</code> package.</p>
+ </div>
+ <div class="section level2">
<h2 id="see-also">See also<a class="anchor" aria-label="anchor" href="#see-also"></a></h2>
<div class="dont-index"><p><code><a href="perc_runoff_exposit.html">perc_runoff_exposit</a></code> for runoff loss percentages and <code><a href="perc_runoff_reduction_exposit.html">perc_runoff_reduction_exposit</a></code> for runoff reduction percentages used</p></div>
</div>
@@ -140,18 +136,18 @@ for the different distances. If the rate was given in g/ha, the PECsw are in mic
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.248 0.001 </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> $runoff</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> dissolved bound total</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> No buffer 1.240 0.00500 1.24500</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 5 m 0.744 0.00300 0.74700</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 10 m 0.496 0.00075 0.49675</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 20 m 0.248 0.00025 0.24825</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> dissolved bound total</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> No buffer 1.240 [g] 0.00500 [g] 1.24500 [g]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 5 m 0.744 [g] 0.00300 [g] 0.74700 [g]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 10 m 0.496 [g] 0.00075 [g] 0.49675 [g]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 20 m 0.248 [g] 0.00025 [g] 0.24825 [g]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> $PEC_sw_runoff</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> dissolved bound total</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> No buffer 4.769231 0.019230769 4.788462</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 5 m 4.133333 0.016666667 4.150000</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 10 m 3.542857 0.005357143 3.548214</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 20 m 2.480000 0.002500000 2.482500</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> dissolved bound total</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> No buffer 4.769231 [µg/L] 0.019230769 [µg/L] 4.788462 [µg/L]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 5 m 4.133333 [µg/L] 0.016666667 [µg/L] 4.150000 [µg/L]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 10 m 3.542857 [µg/L] 0.005357143 [µg/L] 3.548214 [µg/L]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 20 m 2.480000 [µg/L] 0.002500000 [µg/L] 2.482500 [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
<span class="r-in"><span> <span class="fu">PEC_sw_exposit_runoff</span><span class="op">(</span><span class="fl">600</span>, Koc <span class="op">=</span> <span class="fl">10000</span>, DT50 <span class="op">=</span> <span class="fl">195</span>, exposit <span class="op">=</span> <span class="st">"3.01a"</span><span class="op">)</span></span></span>
<span class="r-out co"><span class="r-pr">#&gt;</span> $perc_runoff</span>
@@ -159,42 +155,42 @@ for the different distances. If the rate was given in g/ha, the PECsw are in mic
<span class="r-out co"><span class="r-pr">#&gt;</span> 0.037 0.159 </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> $runoff</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> dissolved bound total</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> No buffer 0.21964521 0.94388078 1.16352600</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 3 m 0.16473391 0.66071655 0.82545046</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 5 m 0.13178713 0.56632847 0.69811560</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 6 m 0.12080487 0.42474635 0.54555122</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 10 m 0.08785809 0.14158212 0.22944020</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 20 m 0.04392904 0.04719404 0.09112308</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> dissolved bound total</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> No buffer 0.21964521 [g] 0.94388078 [g] 1.16352600 [g]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 3 m 0.16473391 [g] 0.66071655 [g] 0.82545046 [g]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 5 m 0.13178713 [g] 0.56632847 [g] 0.69811560 [g]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 6 m 0.12080487 [g] 0.42474635 [g] 0.54555122 [g]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 10 m 0.08785809 [g] 0.14158212 [g] 0.22944020 [g]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 20 m 0.04392904 [g] 0.04719404 [g] 0.09112308 [g]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> $PEC_sw_runoff</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> dissolved bound total</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> No buffer 0.8447893 3.6303107 4.4751000</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 3 m 0.7844472 3.1462693 3.9307165</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 5 m 0.7321507 3.1462693 3.8784200</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 6 m 0.7106169 2.4985080 3.2091248</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 10 m 0.6275578 1.0113008 1.6388586</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 20 m 0.4392904 0.4719404 0.9112308</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> dissolved bound total</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> No buffer 0.8447893 [µg/L] 3.6303107 [µg/L] 4.4751000 [µg/L]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 3 m 0.7844472 [µg/L] 3.1462693 [µg/L] 3.9307165 [µg/L]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 5 m 0.7321507 [µg/L] 3.1462693 [µg/L] 3.8784200 [µg/L]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 6 m 0.7106169 [µg/L] 2.4985080 [µg/L] 3.2091248 [µg/L]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 10 m 0.6275578 [µg/L] 1.0113008 [µg/L] 1.6388586 [µg/L]</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 20 m 0.4392904 [µg/L] 0.4719404 [µg/L] 0.9112308 [µg/L]</span>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
</code></pre></div>
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diff --git a/docs/reference/PEC_sw_focus.html b/docs/reference/PEC_sw_focus.html
index d9d06de..d91d957 100644
--- a/docs/reference/PEC_sw_focus.html
+++ b/docs/reference/PEC_sw_focus.html
@@ -1,55 +1,46 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="This is a reimplementation of the FOCUS Step 1 and 2 calculator version 3.2,
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Calculate PEC surface water at FOCUS Step 1 — PEC_sw_focus • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate PEC surface water at FOCUS Step 1 — PEC_sw_focus"><meta name="description" content="This is a reimplementation of the FOCUS Step 1 and 2 calculator version 3.2,
authored by Michael Klein, in R. Note that results for multiple
applications should be compared to the corresponding results for a
single application. At current, this is not done automatically in
this implementation. Only Step 1 PECs are calculated. However,
input files can be generated that are suitable as input for
-the FOCUS calculator."><title>Calculate PEC surface water at FOCUS Step 1 — PEC_sw_focus • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate PEC surface water at FOCUS Step 1 — PEC_sw_focus"><meta property="og:description" content="This is a reimplementation of the FOCUS Step 1 and 2 calculator version 3.2,
+the FOCUS calculator."><meta property="og:description" content="This is a reimplementation of the FOCUS Step 1 and 2 calculator version 3.2,
authored by Michael Klein, in R. Note that results for multiple
applications should be compared to the corresponding results for a
single application. At current, this is not done automatically in
this implementation. Only Step 1 PECs are calculated. However,
input files can be generated that are suitable as input for
-the FOCUS calculator."><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
-<script src="https://oss.maxcdn.com/html5shiv/3.7.3/html5shiv.min.js"></script>
-<script src="https://oss.maxcdn.com/respond/1.4.2/respond.min.js"></script>
-<![endif]--></head><body>
+the FOCUS calculator."></head><body>
<a href="#main" class="visually-hidden-focusable">Skip to contents</a>
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+
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- <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.1</small>
+ <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.3</small>
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-
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<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Calculate PEC surface water at FOCUS Step 1</h1>
+
+ <h1>Calculate PEC surface water at FOCUS Step 1</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_focus.R" class="external-link"><code>R/PEC_sw_focus.R</code></a></small>
<div class="d-none name"><code>PEC_sw_focus.Rd</code></div>
</div>
@@ -89,85 +80,87 @@ the FOCUS calculator.</p>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>parent</dt>
+
+
+<dl><dt id="arg-parent">parent<a class="anchor" aria-label="anchor" href="#arg-parent"></a></dt>
<dd><p>A list containing substance specific parameters, e.g.
conveniently generated by <a href="chent_focus_sw.html">chent_focus_sw</a>.</p></dd>
-<dt>rate</dt>
+<dt id="arg-rate">rate<a class="anchor" aria-label="anchor" href="#arg-rate"></a></dt>
<dd><p>The application rate in g/ha. Overriden when
applications are given explicitly</p></dd>
-<dt>n</dt>
+<dt id="arg-n">n<a class="anchor" aria-label="anchor" href="#arg-n"></a></dt>
<dd><p>The number of applications</p></dd>
-<dt>i</dt>
+<dt id="arg-i">i<a class="anchor" aria-label="anchor" href="#arg-i"></a></dt>
<dd><p>The application interval</p></dd>
-<dt>comment</dt>
+<dt id="arg-comment">comment<a class="anchor" aria-label="anchor" href="#arg-comment"></a></dt>
<dd><p>A comment for the input file</p></dd>
-<dt>met</dt>
+<dt id="arg-met">met<a class="anchor" aria-label="anchor" href="#arg-met"></a></dt>
<dd><p>A list containing metabolite specific parameters. e.g.
conveniently generated by <a href="chent_focus_sw.html">chent_focus_sw</a>. If not NULL,
the PEC is calculated for this compound, not the parent.</p></dd>
-<dt>f_drift</dt>
+<dt id="arg-f-drift">f_drift<a class="anchor" aria-label="anchor" href="#arg-f-drift"></a></dt>
<dd><p>The fraction of the application rate reaching the waterbody
via drift. If NA, this is derived from the scenario name and the number
of applications via the drift data defined by the
<a href="FOCUS_Step_12_scenarios.html">FOCUS_Step_12_scenarios</a></p></dd>
-<dt>f_rd</dt>
+<dt id="arg-f-rd">f_rd<a class="anchor" aria-label="anchor" href="#arg-f-rd"></a></dt>
<dd><p>The fraction of the amount applied reaching the waterbody via
runoff/drainage. At Step 1, it is assumed to be 10%, be it the
parent or a metabolite</p></dd>
-<dt>scenario</dt>
+<dt id="arg-scenario">scenario<a class="anchor" aria-label="anchor" href="#arg-scenario"></a></dt>
<dd><p>The name of the scenario. Must be one of the scenario
names given in <a href="FOCUS_Step_12_scenarios.html">FOCUS_Step_12_scenarios</a></p></dd>
-<dt>region</dt>
+<dt id="arg-region">region<a class="anchor" aria-label="anchor" href="#arg-region"></a></dt>
<dd><p>'n' for Northern Europe or 's' for Southern Europe. If NA, only
Step 1 PECsw are calculated</p></dd>
-<dt>season</dt>
+<dt id="arg-season">season<a class="anchor" aria-label="anchor" href="#arg-season"></a></dt>
<dd><p>'of' for October to February, 'mm' for March to May, and 'js'
for June to September. If NA, only step 1 PECsw are calculated</p></dd>
-<dt>interception</dt>
+<dt id="arg-interception">interception<a class="anchor" aria-label="anchor" href="#arg-interception"></a></dt>
<dd><p>One of 'no interception' (default), 'minimal crop cover',
'average crop cover' or 'full canopy'</p></dd>
-<dt>met_form_water</dt>
+<dt id="arg-met-form-water">met_form_water<a class="anchor" aria-label="anchor" href="#arg-met-form-water"></a></dt>
<dd><p>Should the metabolite formation in water be taken into
account? This can be switched off to check the influence and to compare
with previous versions of the Steps 12 calculator</p></dd>
-<dt>txt_file</dt>
+<dt id="arg-txt-file">txt_file<a class="anchor" aria-label="anchor" href="#arg-txt-file"></a></dt>
<dd><p>the name, and potentially the full path to the
Steps.12 input text file to which the specification of the run(s)
should be written</p></dd>
-<dt>overwrite</dt>
+<dt id="arg-overwrite">overwrite<a class="anchor" aria-label="anchor" href="#arg-overwrite"></a></dt>
<dd><p>Should an existing file a the location specified in
<code>txt_file</code> be overwritten? Only takes effect if append is FALSE.</p></dd>
-<dt>append</dt>
+<dt id="arg-append">append<a class="anchor" aria-label="anchor" href="#arg-append"></a></dt>
<dd><p>Should the input text file be appended, if it exists?</p></dd>
</dl></div>
@@ -294,23 +287,23 @@ http://esdac.jrc.ec.europa.eu/projects/stepsonetwo</p>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
<footer><div class="pkgdown-footer-left">
- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
<div class="pkgdown-footer-right">
- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
</div>
</footer></div>
-
-
+
+
</body></html>
diff --git a/docs/reference/PEC_sw_sed.html b/docs/reference/PEC_sw_sed.html
index c4b0fd8..6d377c9 100644
--- a/docs/reference/PEC_sw_sed.html
+++ b/docs/reference/PEC_sw_sed.html
@@ -1,48 +1,36 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="The method 'percentage' is equivalent to what is used in the CRD spreadsheet
-PEC calculator"><title>Calculate predicted environmental concentrations in sediment from surface
-water concentrations — PEC_sw_sed • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate predicted environmental concentrations in sediment from surface
-water concentrations — PEC_sw_sed"><meta property="og:description" content="The method 'percentage' is equivalent to what is used in the CRD spreadsheet
-PEC calculator"><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
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-<![endif]--></head><body>
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Calculate predicted environmental concentrations in sediment from surface water concentrations — PEC_sw_sed • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Calculate predicted environmental concentrations in sediment from surface water concentrations — PEC_sw_sed"><meta name="description" content="The method 'percentage' is equivalent to what is used in the CRD spreadsheet
+PEC calculator"><meta property="og:description" content="The method 'percentage' is equivalent to what is used in the CRD spreadsheet
+PEC calculator"></head><body>
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+
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+ <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.3</small>
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+<li class="nav-item"><a class="nav-link" href="../news/index.html">Changelog</a></li>
+ </ul><ul class="navbar-nav"><li class="nav-item"><form class="form-inline" role="search">
+ <input class="form-control" type="search" name="search-input" id="search-input" autocomplete="off" aria-label="Search site" placeholder="Search for" data-search-index="../search.json"></form></li>
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-
+
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<div class="row">
<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Calculate predicted environmental concentrations in sediment from surface
-water concentrations</h1>
+
+ <h1>Calculate predicted environmental concentrations in sediment from surface water concentrations</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_sed.R" class="external-link"><code>R/PEC_sw_sed.R</code></a></small>
<div class="d-none name"><code>PEC_sw_sed.Rd</code></div>
</div>
@@ -58,50 +46,50 @@ PEC calculator</p>
<span> <span class="va">PEC_sw</span>,</span>
<span> percentage <span class="op">=</span> <span class="fl">100</span>,</span>
<span> method <span class="op">=</span> <span class="st">"percentage"</span>,</span>
-<span> sediment_depth <span class="op">=</span> <span class="fl">5</span>,</span>
-<span> water_depth <span class="op">=</span> <span class="fl">30</span>,</span>
-<span> sediment_density <span class="op">=</span> <span class="fl">1.3</span>,</span>
+<span> sediment_depth <span class="op">=</span> <span class="fu">set_units</span><span class="op">(</span><span class="fl">5</span>, <span class="st">"cm"</span><span class="op">)</span>,</span>
+<span> water_depth <span class="op">=</span> <span class="fu">set_units</span><span class="op">(</span><span class="fl">30</span>, <span class="st">"cm"</span><span class="op">)</span>,</span>
+<span> sediment_density <span class="op">=</span> <span class="fu">set_units</span><span class="op">(</span><span class="fl">1.3</span>, <span class="st">"kg/L"</span><span class="op">)</span>,</span>
<span> PEC_sed_units <span class="op">=</span> <span class="fu"><a href="https://rdrr.io/r/base/c.html" class="external-link">c</a></span><span class="op">(</span><span class="st">"µg/kg"</span>, <span class="st">"mg/kg"</span><span class="op">)</span></span>
<span><span class="op">)</span></span></code></pre></div>
</div>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>PEC_sw</dt>
+
+
+<dl><dt id="arg-pec-sw">PEC_sw<a class="anchor" aria-label="anchor" href="#arg-pec-sw"></a></dt>
<dd><p>Numeric vector or matrix of surface water concentrations in µg/L for
which the corresponding sediment concentration is to be estimated</p></dd>
-<dt>percentage</dt>
+<dt id="arg-percentage">percentage<a class="anchor" aria-label="anchor" href="#arg-percentage"></a></dt>
<dd><p>The percentage in sediment, used for the percentage method</p></dd>
-<dt>method</dt>
+<dt id="arg-method">method<a class="anchor" aria-label="anchor" href="#arg-method"></a></dt>
<dd><p>The method used for the calculation</p></dd>
-<dt>sediment_depth</dt>
+<dt id="arg-sediment-depth">sediment_depth<a class="anchor" aria-label="anchor" href="#arg-sediment-depth"></a></dt>
<dd><p>Depth of the sediment layer</p></dd>
-<dt>water_depth</dt>
+<dt id="arg-water-depth">water_depth<a class="anchor" aria-label="anchor" href="#arg-water-depth"></a></dt>
<dd><p>Depth of the water body in cm</p></dd>
-<dt>sediment_density</dt>
-<dd><p>The density of the sediment in L/kg (equivalent to
+<dt id="arg-sediment-density">sediment_density<a class="anchor" aria-label="anchor" href="#arg-sediment-density"></a></dt>
+<dd><p>The density of the sediment in kg/L (equivalent to
g/cm3)</p></dd>
-<dt>PEC_sed_units</dt>
+<dt id="arg-pec-sed-units">PEC_sed_units<a class="anchor" aria-label="anchor" href="#arg-pec-sed-units"></a></dt>
<dd><p>The units of the estimated sediment PEC value</p></dd>
</dl></div>
<div class="section level2">
<h2 id="value">Value<a class="anchor" aria-label="anchor" href="#value"></a></h2>
-
-
-<p>The predicted concentration in sediment</p>
+ <p>The predicted concentration in sediment</p>
</div>
<div class="section level2">
<h2 id="author">Author<a class="anchor" aria-label="anchor" href="#author"></a></h2>
@@ -110,28 +98,30 @@ g/cm3)</p></dd>
<div class="section level2">
<h2 id="ref-examples">Examples<a class="anchor" aria-label="anchor" href="#ref-examples"></a></h2>
- <div class="sourceCode"><pre class="sourceCode r"><code><span class="r-in"><span><span class="fu">PEC_sw_sed</span><span class="op">(</span><span class="fu"><a href="PEC_sw_drift.html">PEC_sw_drift</a></span><span class="op">(</span><span class="fl">100</span>, distances <span class="op">=</span> <span class="fl">1</span><span class="op">)</span>, percentage <span class="op">=</span> <span class="fl">50</span><span class="op">)</span></span></span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 1 m </span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 2.130769 </span>
+ <div class="sourceCode"><pre class="sourceCode r"><code><span class="r-in"><span><span class="kw"><a href="https://rdrr.io/r/base/library.html" class="external-link">library</a></span><span class="op">(</span><span class="va"><a href="https://pkgdown.jrwb.de/pfm">pfm</a></span><span class="op">)</span></span></span>
+<span class="r-in"><span><span class="kw"><a href="https://rdrr.io/r/base/library.html" class="external-link">library</a></span><span class="op">(</span><span class="va"><a href="https://r-quantities.github.io/units/" class="external-link">units</a></span><span class="op">)</span></span></span>
+<span class="r-msg co"><span class="r-pr">#&gt;</span> udunits database from /usr/share/xml/udunits/udunits2.xml</span>
+<span class="r-in"><span><span class="fu">PEC_sw_sed</span><span class="op">(</span><span class="fu"><a href="PEC_sw_drift.html">PEC_sw_drift</a></span><span class="op">(</span><span class="fl">100</span>, distances <span class="op">=</span> <span class="fl">1</span><span class="op">)</span>, percentage <span class="op">=</span> <span class="fl">50</span><span class="op">)</span></span></span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 2.130769 [µg/kg]</span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
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- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
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- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
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diff --git a/docs/reference/SFO_actual_twa.html b/docs/reference/SFO_actual_twa.html
index 6dc6862..186b9f3 100644
--- a/docs/reference/SFO_actual_twa.html
+++ b/docs/reference/SFO_actual_twa.html
@@ -1,43 +1,34 @@
<!DOCTYPE html>
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- <img src="" class="logo" alt=""><h1>Actual and maximum moving window time average concentrations for SFO kinetics</h1>
+
+ <h1>Actual and maximum moving window time average concentrations for SFO kinetics</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/SFO_actual_twa.R" class="external-link"><code>R/SFO_actual_twa.R</code></a></small>
<div class="d-none name"><code>SFO_actual_twa.Rd</code></div>
</div>
@@ -59,11 +50,13 @@ Kinetics from Environmental Fate Studies on Pesticides in EU Registration, Versi
</div>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>DT50</dt>
+
+
+<dl><dt id="arg-dt-">DT50<a class="anchor" aria-label="anchor" href="#arg-dt-"></a></dt>
<dd><p>The half-life.</p></dd>
-<dt>times</dt>
+<dt id="arg-times">times<a class="anchor" aria-label="anchor" href="#arg-times"></a></dt>
<dd><p>The output times, and window sizes for time weighted average concentrations</p></dd>
</dl></div>
@@ -89,23 +82,23 @@ Kinetics from Environmental Fate Studies on Pesticides in EU Registration, Versi
<span class="r-out co"><span class="r-pr">#&gt;</span> 100 0.0009765625 0.1441286</span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
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- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
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diff --git a/docs/reference/SSLRC_mobility_classification.html b/docs/reference/SSLRC_mobility_classification.html
index 1874128..3463b3c 100644
--- a/docs/reference/SSLRC_mobility_classification.html
+++ b/docs/reference/SSLRC_mobility_classification.html
@@ -1,45 +1,36 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="This implements the method specified in the UK data requirements handbook and was
-checked against the spreadsheet published on the CRD website"><title>Determine the SSLRC mobility classification for a chemical substance from its Koc — SSLRC_mobility_classification • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Determine the SSLRC mobility classification for a chemical substance from its Koc — SSLRC_mobility_classification"><meta property="og:description" content="This implements the method specified in the UK data requirements handbook and was
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+ </ul><ul class="navbar-nav"><li class="nav-item"><form class="form-inline" role="search">
+ <input class="form-control" type="search" name="search-input" id="search-input" autocomplete="off" aria-label="Search site" placeholder="Search for" data-search-index="../search.json"></form></li>
+<li class="nav-item"><a class="external-link nav-link" href="https://github.com/jranke/pfm/" aria-label="GitHub"><span class="fa fab fa-github fa-lg"></span></a></li>
</ul></div>
-
+
</div>
</nav><div class="container template-reference-topic">
<div class="row">
<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Determine the SSLRC mobility classification for a chemical substance from its Koc</h1>
+
+ <h1>Determine the SSLRC mobility classification for a chemical substance from its Koc</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/SSLRC_mobility_classification.R" class="external-link"><code>R/SSLRC_mobility_classification.R</code></a></small>
<div class="d-none name"><code>SSLRC_mobility_classification.Rd</code></div>
</div>
@@ -56,15 +47,15 @@ checked against the spreadsheet published on the CRD website</p>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>Koc</dt>
+
+
+<dl><dt id="arg-koc">Koc<a class="anchor" aria-label="anchor" href="#arg-koc"></a></dt>
<dd><p>The sorption coefficient normalised to organic carbon in L/kg</p></dd>
</dl></div>
<div class="section level2">
<h2 id="value">Value<a class="anchor" aria-label="anchor" href="#value"></a></h2>
-
-
-<p>A list containing the classification and the percentage of the
+ <p>A list containing the classification and the percentage of the
compound transported per 10 mm drain water</p>
</div>
<div class="section level2">
@@ -100,23 +91,23 @@ accessed 2019-09-27</p>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
<footer><div class="pkgdown-footer-left">
- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
<div class="pkgdown-footer-right">
- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
</div>
</footer></div>
-
-
+
+
</body></html>
diff --git a/docs/reference/TOXSWA_cwa.html b/docs/reference/TOXSWA_cwa.html
index 281315a..f620349 100644
--- a/docs/reference/TOXSWA_cwa.html
+++ b/docs/reference/TOXSWA_cwa.html
@@ -1,51 +1,42 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="An R6 class for holding TOXSWA water concentration (cwa) data
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>R6 class for holding TOXSWA water concentration data and associated statistics — TOXSWA_cwa • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="R6 class for holding TOXSWA water concentration data and associated statistics — TOXSWA_cwa"><meta name="description" content="An R6 class for holding TOXSWA water concentration (cwa) data
and some associated statistics. like maximum moving window average
concentrations, and dataframes holding the events exceeding specified
thresholds. Usually, an instance of this class will be generated
-by read.TOXSWA_cwa."><title>R6 class for holding TOXSWA water concentration data and associated statistics — TOXSWA_cwa • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="R6 class for holding TOXSWA water concentration data and associated statistics — TOXSWA_cwa"><meta property="og:description" content="An R6 class for holding TOXSWA water concentration (cwa) data
+by read.TOXSWA_cwa."><meta property="og:description" content="An R6 class for holding TOXSWA water concentration (cwa) data
and some associated statistics. like maximum moving window average
concentrations, and dataframes holding the events exceeding specified
thresholds. Usually, an instance of this class will be generated
-by read.TOXSWA_cwa."><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
-<script src="https://oss.maxcdn.com/html5shiv/3.7.3/html5shiv.min.js"></script>
-<script src="https://oss.maxcdn.com/respond/1.4.2/respond.min.js"></script>
-<![endif]--></head><body>
+by read.TOXSWA_cwa."></head><body>
<a href="#main" class="visually-hidden-focusable">Skip to contents</a>
-
- <nav class="navbar fixed-top navbar-light navbar-expand-lg bg-light"><div class="container">
-
+
+ <nav class="navbar navbar-expand-lg fixed-top bg-light" data-bs-theme="light" aria-label="Site navigation"><div class="container">
+
<a class="navbar-brand me-2" href="../index.html">pfm</a>
- <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.1</small>
+ <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.3</small>
+
-
<button class="navbar-toggler" type="button" data-bs-toggle="collapse" data-bs-target="#navbar" aria-controls="navbar" aria-expanded="false" aria-label="Toggle navigation">
<span class="navbar-toggler-icon"></span>
</button>
<div id="navbar" class="collapse navbar-collapse ms-3">
- <ul class="navbar-nav me-auto"><li class="active nav-item">
- <a class="nav-link" href="../reference/index.html">Reference</a>
-</li>
- </ul><form class="form-inline my-2 my-lg-0" role="search">
- <input type="search" class="form-control me-sm-2" aria-label="Toggle navigation" name="search-input" data-search-index="../search.json" id="search-input" placeholder="Search for" autocomplete="off"></form>
-
- <ul class="navbar-nav"><li class="nav-item">
- <a class="external-link nav-link" href="https://github.com/jranke/pfm/" aria-label="github">
- <span class="fab fa fab fa-github fa-lg"></span>
-
- </a>
-</li>
+ <ul class="navbar-nav me-auto"><li class="active nav-item"><a class="nav-link" href="../reference/index.html">Reference</a></li>
+<li class="nav-item"><a class="nav-link" href="../news/index.html">Changelog</a></li>
+ </ul><ul class="navbar-nav"><li class="nav-item"><form class="form-inline" role="search">
+ <input class="form-control" type="search" name="search-input" id="search-input" autocomplete="off" aria-label="Search site" placeholder="Search for" data-search-index="../search.json"></form></li>
+<li class="nav-item"><a class="external-link nav-link" href="https://github.com/jranke/pfm/" aria-label="GitHub"><span class="fa fab fa-github fa-lg"></span></a></li>
</ul></div>
-
+
</div>
</nav><div class="container template-reference-topic">
<div class="row">
<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>R6 class for holding TOXSWA water concentration data and associated statistics</h1>
+
+ <h1>R6 class for holding TOXSWA water concentration data and associated statistics</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/TOXSWA_cwa.R" class="external-link"><code>R/TOXSWA_cwa.R</code></a></small>
<div class="d-none name"><code>TOXSWA_cwa.Rd</code></div>
</div>
@@ -61,7 +52,7 @@ by <code><a href="read.TOXSWA_cwa.html">read.TOXSWA_cwa</a></code>.</p>
<div class="section level2">
<h2 id="format">Format<a class="anchor" aria-label="anchor" href="#format"></a></h2>
- <p>An <code>R6Class</code> generator object.</p>
+ <p>An <code><a href="https://r6.r-lib.org/reference/R6Class.html" class="external-link">R6Class</a></code> generator object.</p>
</div>
<div class="section level2">
<h2 id="public-fields">Public fields<a class="anchor" aria-label="anchor" href="#public-fields"></a></h2>
@@ -103,7 +94,7 @@ for the requested moving window sizes in days.</p></dd>
</div>
<div class="section level2">
<h2 id="methods">Methods<a class="anchor" aria-label="anchor" href="#methods"></a></h2>
-
+
<div class="section">
<h3 id="public-methods">Public methods<a class="anchor" aria-label="anchor" href="#public-methods"></a></h3>
@@ -264,23 +255,23 @@ suspended matter will be used.</p></dd>
<span class="r-out co"><span class="r-pr">#&gt;</span> 1 55.083 40.58401 0.459 55.083 379.433 15.80971</span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
<footer><div class="pkgdown-footer-left">
- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
<div class="pkgdown-footer-right">
- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
</div>
</footer></div>
-
-
+
+
</body></html>
diff --git a/docs/reference/TSCF.html b/docs/reference/TSCF.html
index 8391cb4..f611a53 100644
--- a/docs/reference/TSCF.html
+++ b/docs/reference/TSCF.html
@@ -1,53 +1,44 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="The FOCUS groundwater guidance (FOCUS 2014, p. 41) states that a reliable measured
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Estimation of the transpiration stream concentration factor — TSCF • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Estimation of the transpiration stream concentration factor — TSCF"><meta name="description" content="The FOCUS groundwater guidance (FOCUS 2014, p. 41) states that a reliable measured
log Kow for neutral pH must be available in order to apply the Briggs
equation. It is not clarified when it can be regarded reliable, but the
equation is stated to be produced for non-ionic compounds, suggesting that
the compound should not be ionogenic (weak acid/base)
-or ionic."><title>Estimation of the transpiration stream concentration factor — TSCF • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Estimation of the transpiration stream concentration factor — TSCF"><meta property="og:description" content="The FOCUS groundwater guidance (FOCUS 2014, p. 41) states that a reliable measured
+or ionic."><meta property="og:description" content="The FOCUS groundwater guidance (FOCUS 2014, p. 41) states that a reliable measured
log Kow for neutral pH must be available in order to apply the Briggs
equation. It is not clarified when it can be regarded reliable, but the
equation is stated to be produced for non-ionic compounds, suggesting that
the compound should not be ionogenic (weak acid/base)
-or ionic."><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
-<script src="https://oss.maxcdn.com/html5shiv/3.7.3/html5shiv.min.js"></script>
-<script src="https://oss.maxcdn.com/respond/1.4.2/respond.min.js"></script>
-<![endif]--></head><body>
+or ionic."></head><body>
<a href="#main" class="visually-hidden-focusable">Skip to contents</a>
-
- <nav class="navbar fixed-top navbar-light navbar-expand-lg bg-light"><div class="container">
-
+
+ <nav class="navbar navbar-expand-lg fixed-top bg-light" data-bs-theme="light" aria-label="Site navigation"><div class="container">
+
<a class="navbar-brand me-2" href="../index.html">pfm</a>
- <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.1</small>
+ <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.3</small>
+
-
<button class="navbar-toggler" type="button" data-bs-toggle="collapse" data-bs-target="#navbar" aria-controls="navbar" aria-expanded="false" aria-label="Toggle navigation">
<span class="navbar-toggler-icon"></span>
</button>
<div id="navbar" class="collapse navbar-collapse ms-3">
- <ul class="navbar-nav me-auto"><li class="active nav-item">
- <a class="nav-link" href="../reference/index.html">Reference</a>
-</li>
- </ul><form class="form-inline my-2 my-lg-0" role="search">
- <input type="search" class="form-control me-sm-2" aria-label="Toggle navigation" name="search-input" data-search-index="../search.json" id="search-input" placeholder="Search for" autocomplete="off"></form>
-
- <ul class="navbar-nav"><li class="nav-item">
- <a class="external-link nav-link" href="https://github.com/jranke/pfm/" aria-label="github">
- <span class="fab fa fab fa-github fa-lg"></span>
-
- </a>
-</li>
+ <ul class="navbar-nav me-auto"><li class="active nav-item"><a class="nav-link" href="../reference/index.html">Reference</a></li>
+<li class="nav-item"><a class="nav-link" href="../news/index.html">Changelog</a></li>
+ </ul><ul class="navbar-nav"><li class="nav-item"><form class="form-inline" role="search">
+ <input class="form-control" type="search" name="search-input" id="search-input" autocomplete="off" aria-label="Search site" placeholder="Search for" data-search-index="../search.json"></form></li>
+<li class="nav-item"><a class="external-link nav-link" href="https://github.com/jranke/pfm/" aria-label="GitHub"><span class="fa fab fa-github fa-lg"></span></a></li>
</ul></div>
-
+
</div>
</nav><div class="container template-reference-topic">
<div class="row">
<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Estimation of the transpiration stream concentration factor</h1>
+
+ <h1>Estimation of the transpiration stream concentration factor</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/TSCF.R" class="external-link"><code>R/TSCF.R</code></a></small>
<div class="d-none name"><code>TSCF.Rd</code></div>
</div>
@@ -68,11 +59,13 @@ or ionic.</p>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>log_Kow</dt>
+
+
+<dl><dt id="arg-log-kow">log_Kow<a class="anchor" aria-label="anchor" href="#arg-log-kow"></a></dt>
<dd><p>The decadic logarithm of the octanol-water partition constant</p></dd>
-<dt>method</dt>
+<dt id="arg-method">method<a class="anchor" aria-label="anchor" href="#arg-method"></a></dt>
<dd><p>Short name of the estimation method.</p></dd>
</dl></div>
@@ -98,23 +91,23 @@ by plant roots. Environ. Sci. Technol 43, 324 - 329</p>
<span class="r-plt img"><img src="TSCF-1.png" alt="" width="700" height="433"></span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
<footer><div class="pkgdown-footer-left">
- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
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diff --git a/docs/reference/drift_data_JKI.html b/docs/reference/drift_data_JKI.html
index 5d9c11e..064264f 100644
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+++ b/docs/reference/drift_data_JKI.html
@@ -1,48 +1,36 @@
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+published by the German Julius-Kühn Institute (JKI)."><meta property="og:description" content="Deposition from spray drift expressed as percent of the applied dose as
+published by the German Julius-Kühn Institute (JKI)."></head><body>
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- <img src="" class="logo" alt=""><h1>Deposition from spray drift expressed as percent of the applied dose as
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<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/drift_data_JKI.R" class="external-link"><code>R/drift_data_JKI.R</code></a></small>
<div class="d-none name"><code>drift_data_JKI.Rd</code></div>
</div>
@@ -288,23 +276,23 @@ included.</p>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
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diff --git a/docs/reference/drift_parameters_focus.html b/docs/reference/drift_parameters_focus.html
index 3f54160..6d3f679 100644
--- a/docs/reference/drift_parameters_focus.html
+++ b/docs/reference/drift_parameters_focus.html
@@ -1,49 +1,40 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="The parameters were extracted from Appendix B to the FOCUS surface water guidance
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Regression parameters for the Rautmann drift data — drift_parameters_focus • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Regression parameters for the Rautmann drift data — drift_parameters_focus"><meta name="description" content="The parameters were extracted from Appendix B to the FOCUS surface water guidance
using the R code given in the file data_generation/drift_parameters_focus.R
installed with this package. The appendix itself is not included in the package,
-as its licence is not clear."><title>Regression parameters for the Rautmann drift data — drift_parameters_focus • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Regression parameters for the Rautmann drift data — drift_parameters_focus"><meta property="og:description" content="The parameters were extracted from Appendix B to the FOCUS surface water guidance
+as its licence is not clear."><meta property="og:description" content="The parameters were extracted from Appendix B to the FOCUS surface water guidance
using the R code given in the file data_generation/drift_parameters_focus.R
installed with this package. The appendix itself is not included in the package,
-as its licence is not clear."><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
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- <img src="" class="logo" alt=""><h1>Regression parameters for the Rautmann drift data</h1>
+
+ <h1>Regression parameters for the Rautmann drift data</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/drift_parameters_focus.R" class="external-link"><code>R/drift_parameters_focus.R</code></a></small>
<div class="d-none name"><code>drift_parameters_focus.Rd</code></div>
</div>
@@ -111,23 +102,23 @@ Bundesanst. Land- Forstwirtsch. 383, 133-141</p>
<span class="r-out co"><span class="r-pr">#&gt;</span> [6] "fruit, early" "aerial" </span>
</code></pre></div>
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- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
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- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
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- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
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diff --git a/docs/reference/drift_percentages_rautmann.html b/docs/reference/drift_percentages_rautmann.html
index ae5ca03..bee0e60 100644
--- a/docs/reference/drift_percentages_rautmann.html
+++ b/docs/reference/drift_percentages_rautmann.html
@@ -1,43 +1,34 @@
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- <img src="" class="logo" alt=""><h1>Calculate drift percentages based on Rautmann data</h1>
+
+ <h1>Calculate drift percentages based on Rautmann data</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_drift.R" class="external-link"><code>R/PEC_sw_drift.R</code></a></small>
<div class="d-none name"><code>drift_percentages_rautmann.Rd</code></div>
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@@ -60,25 +51,27 @@
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>distances</dt>
+
+
+<dl><dt id="arg-distances">distances<a class="anchor" aria-label="anchor" href="#arg-distances"></a></dt>
<dd><p>The distances in m for which to get PEC values</p></dd>
-<dt>applications</dt>
+<dt id="arg-applications">applications<a class="anchor" aria-label="anchor" href="#arg-applications"></a></dt>
<dd><p>Number of applications for selection of drift percentile</p></dd>
-<dt>crop_group_focus</dt>
+<dt id="arg-crop-group-focus">crop_group_focus<a class="anchor" aria-label="anchor" href="#arg-crop-group-focus"></a></dt>
<dd><p>One of the crop groups as used in <a href="drift_parameters_focus.html">drift_parameters_focus</a></p></dd>
-<dt>formula</dt>
+<dt id="arg-formula">formula<a class="anchor" aria-label="anchor" href="#arg-formula"></a></dt>
<dd><p>By default, the original Rautmann formula is used. If you
specify "FOCUS", mean drift input over the width of the water body is
calculated as described in Chapter 5.4.5 of the FOCUS surface water guidance</p></dd>
-<dt>widths</dt>
+<dt id="arg-widths">widths<a class="anchor" aria-label="anchor" href="#arg-widths"></a></dt>
<dd><p>The widths of the water bodies (only used in the FOCUS formula)</p></dd>
</dl></div>
@@ -135,23 +128,23 @@ FOrum for the Co-ordination of pesticde fate models and their USe.
<span class="r-plt img"><img src="drift_percentages_rautmann-1.png" alt="" width="700" height="433"></span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
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- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
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diff --git a/docs/reference/endpoint.html b/docs/reference/endpoint.html
index 6705770..228d77f 100644
--- a/docs/reference/endpoint.html
+++ b/docs/reference/endpoint.html
@@ -1,49 +1,40 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="R6 class objects of class chent represent chemical entities
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Retrieve endpoint information from the chyaml field of a chent object — endpoint • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Retrieve endpoint information from the chyaml field of a chent object — endpoint"><meta name="description" content="R6 class objects of class chent represent chemical entities
and can hold a list of information loaded from a chemical yaml file in their
chyaml field. Such information is extracted and optionally aggregated by
-this function."><title>Retrieve endpoint information from the chyaml field of a chent object — endpoint • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Retrieve endpoint information from the chyaml field of a chent object — endpoint"><meta property="og:description" content="R6 class objects of class chent represent chemical entities
+this function."><meta property="og:description" content="R6 class objects of class chent represent chemical entities
and can hold a list of information loaded from a chemical yaml file in their
chyaml field. Such information is extracted and optionally aggregated by
-this function."><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
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+this function."></head><body>
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+
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+ <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.3</small>
+
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+<li class="nav-item"><a class="nav-link" href="../news/index.html">Changelog</a></li>
+ </ul><ul class="navbar-nav"><li class="nav-item"><form class="form-inline" role="search">
+ <input class="form-control" type="search" name="search-input" id="search-input" autocomplete="off" aria-label="Search site" placeholder="Search for" data-search-index="../search.json"></form></li>
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- <img src="" class="logo" alt=""><h1>Retrieve endpoint information from the chyaml field of a chent object</h1>
+
+ <h1>Retrieve endpoint information from the chyaml field of a chent object</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/endpoint.R" class="external-link"><code>R/endpoint.R</code></a></small>
<div class="d-none name"><code>endpoint.Rd</code></div>
</div>
@@ -94,59 +85,59 @@ this function.</p>
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>chent</dt>
+
+
+<dl><dt id="arg-chent">chent<a class="anchor" aria-label="anchor" href="#arg-chent"></a></dt>
<dd><p>The chent object to get the information from</p></dd>
-<dt>medium</dt>
+<dt id="arg-medium">medium<a class="anchor" aria-label="anchor" href="#arg-medium"></a></dt>
<dd><p>The medium for which information is sought</p></dd>
-<dt>type</dt>
+<dt id="arg-type">type<a class="anchor" aria-label="anchor" href="#arg-type"></a></dt>
<dd><p>The information type</p></dd>
-<dt>lab_field</dt>
+<dt id="arg-lab-field">lab_field<a class="anchor" aria-label="anchor" href="#arg-lab-field"></a></dt>
<dd><p>If not NA, do we want laboratory or field endpoints</p></dd>
-<dt>redox</dt>
+<dt id="arg-redox">redox<a class="anchor" aria-label="anchor" href="#arg-redox"></a></dt>
<dd><p>If not NA, are we looking for aerobic or anaerobic data</p></dd>
-<dt>value</dt>
+<dt id="arg-value">value<a class="anchor" aria-label="anchor" href="#arg-value"></a></dt>
<dd><p>The name of the value we want. The list given in the
usage section is not exclusive</p></dd>
-<dt>aggregator</dt>
+<dt id="arg-aggregator">aggregator<a class="anchor" aria-label="anchor" href="#arg-aggregator"></a></dt>
<dd><p>The aggregator function. Can be mean,
<code><a href="geomean.html">geomean</a></code>, or identity, for example.</p></dd>
-<dt>raw</dt>
+<dt id="arg-raw">raw<a class="anchor" aria-label="anchor" href="#arg-raw"></a></dt>
<dd><p>Should the number(s) be returned as stored in the chent
object (could be a character value) to retain original information
about precision?</p></dd>
-<dt>signif</dt>
+<dt id="arg-signif">signif<a class="anchor" aria-label="anchor" href="#arg-signif"></a></dt>
<dd><p>How many significant digits do we want</p></dd>
-<dt>values</dt>
+<dt id="arg-values">values<a class="anchor" aria-label="anchor" href="#arg-values"></a></dt>
<dd><p>The values to be returned</p></dd>
-<dt>aggregators</dt>
+<dt id="arg-aggregators">aggregators<a class="anchor" aria-label="anchor" href="#arg-aggregators"></a></dt>
<dd><p>A named vector of aggregator functions to be used</p></dd>
</dl></div>
<div class="section level2">
<h2 id="value">Value<a class="anchor" aria-label="anchor" href="#value"></a></h2>
-
-
-<p>The result from applying the aggregator function to
+ <p>The result from applying the aggregator function to
the values converted to a numeric vector, rounded to the
given number of significant digits, or, if raw = TRUE,
the values as a character value, retaining any implicit
@@ -160,23 +151,23 @@ facilitate dealing with such data in R. In pesticide fate modelling, this
exponent is often called 1/n.</p>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
<footer><div class="pkgdown-footer-left">
- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
<div class="pkgdown-footer-right">
- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
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-
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+
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diff --git a/docs/reference/index.html b/docs/reference/index.html
index aaa499d..97f59b5 100644
--- a/docs/reference/index.html
+++ b/docs/reference/index.html
@@ -1,337 +1,365 @@
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+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Package index • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Package index"></head><body>
<a href="#main" class="visually-hidden-focusable">Skip to contents</a>
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- <nav class="navbar fixed-top navbar-light navbar-expand-lg bg-light"><div class="container">
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<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Function reference</h1>
+
+ <h1>Package index</h1>
</div>
<div class="section level2">
<h2 id="general-utility-functions">General utility functions<a class="anchor" aria-label="anchor" href="#general-utility-functions"></a></h2>
-
- <p class="section-desc"></p><p>Functions that are independent of specific fate modelling areas</p>
-
- </div><div id="" class="section level2">
-
-
-
+ <div class="section-desc"><p>Functions that are independent of specific fate modelling areas</p></div>
+
+
+ </div><div class="section level2">
+
+
+
<dl><dt>
-
- <code><a href="geomean.html">geomean()</a></code>
+
+ <code><a href="geomean.html">geomean()</a></code>
+
</dt>
<dd>Calculate the geometric mean</dd>
</dl><dl><dt>
-
- <code><a href="one_box.html">one_box()</a></code>
+
+ <code><a href="one_box.html">one_box()</a></code>
+
</dt>
<dd>Create a time series of decline data</dd>
</dl><dl><dt>
-
- <code><a href="plot.one_box.html">plot(<i>&lt;one_box&gt;</i>)</a></code>
+
+ <code><a href="plot.one_box.html">plot(<i>&lt;one_box&gt;</i>)</a></code>
+
</dt>
<dd>Plot time series of decline data</dd>
</dl><dl><dt>
-
- <code><a href="sawtooth.html">sawtooth()</a></code>
+
+ <code><a href="sawtooth.html">sawtooth()</a></code>
+
</dt>
<dd>Create decline time series for multiple applications</dd>
</dl><dl><dt>
-
- <code><a href="twa.html">twa()</a></code>
+
+ <code><a href="twa.html">twa()</a></code>
+
</dt>
<dd>Calculate a time weighted average concentration</dd>
</dl><dl><dt>
-
- <code><a href="max_twa.html">max_twa()</a></code>
+
+ <code><a href="max_twa.html">max_twa()</a></code>
+
</dt>
<dd>The maximum time weighted average concentration for a moving window</dd>
</dl><dl><dt>
-
- <code><a href="pfm_degradation.html">pfm_degradation()</a></code>
+
+ <code><a href="pfm_degradation.html">pfm_degradation()</a></code>
+
</dt>
<dd>Calculate a time course of relative concentrations based on an mkinmod model</dd>
</dl><dl><dt>
-
- <code><a href="SFO_actual_twa.html">SFO_actual_twa()</a></code>
+
+ <code><a href="SFO_actual_twa.html">SFO_actual_twa()</a></code>
+
</dt>
<dd>Actual and maximum moving window time average concentrations for SFO kinetics</dd>
</dl><dl><dt>
-
- <code><a href="FOMC_actual_twa.html">FOMC_actual_twa()</a></code>
+
+ <code><a href="FOMC_actual_twa.html">FOMC_actual_twa()</a></code>
+
</dt>
<dd>Actual and maximum moving window time average concentrations for FOMC kinetics</dd>
</dl><dl><dt>
-
- <code><a href="reexports.html">reexports</a></code> <code><a href="reexports.html">set_nd_nq</a></code> <code><a href="reexports.html">set_nd_nq_focus</a></code>
+
+ <code><a href="reexports.html">reexports</a></code> <code><a href="reexports.html">set_nd_nq</a></code> <code><a href="reexports.html">set_nd_nq_focus</a></code>
+
</dt>
<dd>Objects exported from other packages</dd>
</dl><dl><dt>
-
- <code><a href="TSCF.html">TSCF()</a></code>
+
+ <code><a href="TSCF.html">TSCF()</a></code>
+
</dt>
<dd>Estimation of the transpiration stream concentration factor</dd>
</dl></div><div class="section level2">
<h2 id="predicted-environmental-concentrations-in-soil">Predicted environmental concentrations in soil<a class="anchor" aria-label="anchor" href="#predicted-environmental-concentrations-in-soil"></a></h2>
-
-
-
- </div><div id="" class="section level2">
-
-
-
+
+
+
+ </div><div class="section level2">
+
+
+
<dl><dt>
-
- <code><a href="PEC_soil.html">PEC_soil()</a></code>
+
+ <code><a href="PEC_soil.html">PEC_soil()</a></code>
+
</dt>
<dd>Calculate predicted environmental concentrations in soil</dd>
</dl><dl><dt>
-
- <code><a href="PEC_soil_mets.html">PEC_soil_mets()</a></code>
+
+ <code><a href="PEC_soil_mets.html">PEC_soil_mets()</a></code>
+
</dt>
<dd>Calculate initial and accumulation PEC soil for a set of metabolites</dd>
</dl><dl><dt>
-
- <code><a href="soil_scenario_data_EFSA_2015.html">soil_scenario_data_EFSA_2015</a></code>
+
+ <code><a href="soil_scenario_data_EFSA_2015.html">soil_scenario_data_EFSA_2015</a></code>
+
</dt>
<dd>Properties of the predefined scenarios from the EFSA guidance from 2015</dd>
</dl><dl><dt>
-
- <code><a href="soil_scenario_data_EFSA_2017.html">soil_scenario_data_EFSA_2017</a></code>
+
+ <code><a href="soil_scenario_data_EFSA_2017.html">soil_scenario_data_EFSA_2017</a></code>
+
</dt>
<dd>Properties of the predefined scenarios from the EFSA guidance from 2017</dd>
</dl><dl><dt>
-
- <code><a href="PEC_FOMC_accu_rel.html">PEC_FOMC_accu_rel()</a></code>
+
+ <code><a href="PEC_FOMC_accu_rel.html">PEC_FOMC_accu_rel()</a></code>
+
</dt>
<dd>Get the relative accumulation of an FOMC model over multiples of an interval</dd>
</dl><dl><dt>
-
- <code><a href="EFSA_washoff_2017.html">EFSA_washoff_2017</a></code>
+
+ <code><a href="EFSA_washoff_2017.html">EFSA_washoff_2017</a></code>
+
</dt>
<dd>Subset of EFSA crop washoff default values</dd>
</dl></div><div class="section level2">
<h2 id="predicted-environmental-concentrations-in-groundwater">Predicted environmental concentrations in groundwater<a class="anchor" aria-label="anchor" href="#predicted-environmental-concentrations-in-groundwater"></a></h2>
-
-
-
- </div><div id="" class="section level2">
-
-
-
+
+
+
+ </div><div class="section level2">
+
+
+
<dl><dt>
-
- <code><a href="FOCUS_GW_scenarios_2012.html">FOCUS_GW_scenarios_2012</a></code>
+
+ <code><a href="FOCUS_GW_scenarios_2012.html">FOCUS_GW_scenarios_2012</a></code>
+
</dt>
<dd>A very small subset of the FOCUS Groundwater scenario definitions</dd>
</dl><dl><dt>
-
- <code><a href="EFSA_GW_interception_2014.html">EFSA_GW_interception_2014</a></code>
+
+ <code><a href="EFSA_GW_interception_2014.html">EFSA_GW_interception_2014</a></code>
+
</dt>
<dd>Subset of EFSA crop interception default values for groundwater modelling</dd>
</dl></div><div class="section level2">
<h2 id="predicted-environmental-concentrations-in-surface-water">Predicted environmental concentrations in surface water<a class="anchor" aria-label="anchor" href="#predicted-environmental-concentrations-in-surface-water"></a></h2>
-
-
-
- </div><div id="" class="section level2">
-
-
-
+
+
+
+ </div><div class="section level2">
+
+
+
<dl><dt>
-
- <code><a href="PEC_sw_drift.html">PEC_sw_drift()</a></code>
+
+ <code><a href="PEC_sw_drift.html">PEC_sw_drift()</a></code>
+
</dt>
<dd>Calculate predicted environmental concentrations in surface water due to drift</dd>
</dl><dl><dt>
-
- <code><a href="drift_data_JKI.html">drift_data_JKI</a></code>
+
+ <code><a href="drift_data_JKI.html">drift_data_JKI</a></code>
+
</dt>
- <dd>Deposition from spray drift expressed as percent of the applied dose as
-published by the JKI</dd>
+ <dd>Deposition from spray drift expressed as percent of the applied dose as published by the JKI</dd>
</dl><dl><dt>
-
- <code><a href="drift_parameters_focus.html">drift_parameters_focus</a></code>
+
+ <code><a href="drift_parameters_focus.html">drift_parameters_focus</a></code>
+
</dt>
<dd>Regression parameters for the Rautmann drift data</dd>
</dl><dl><dt>
-
- <code><a href="drift_percentages_rautmann.html">drift_percentages_rautmann()</a></code>
+
+ <code><a href="drift_percentages_rautmann.html">drift_percentages_rautmann()</a></code>
+
</dt>
<dd>Calculate drift percentages based on Rautmann data</dd>
</dl><dl><dt>
-
- <code><a href="PEC_sw_drainage_UK.html">PEC_sw_drainage_UK()</a></code>
+
+ <code><a href="PEC_sw_drainage_UK.html">PEC_sw_drainage_UK()</a></code>
+
</dt>
<dd>Calculate initial predicted environmental concentrations in surface water due to drainage using the UK method</dd>
</dl><dl><dt>
-
- <code><a href="PEC_sw_sed.html">PEC_sw_sed()</a></code>
+
+ <code><a href="PEC_sw_sed.html">PEC_sw_sed()</a></code>
+
</dt>
- <dd>Calculate predicted environmental concentrations in sediment from surface
-water concentrations</dd>
+ <dd>Calculate predicted environmental concentrations in sediment from surface water concentrations</dd>
</dl><dl><dt>
-
- <code><a href="PEC_sw_focus.html">PEC_sw_focus()</a></code>
+
+ <code><a href="PEC_sw_focus.html">PEC_sw_focus()</a></code>
+
</dt>
<dd>Calculate PEC surface water at FOCUS Step 1</dd>
</dl><dl><dt>
-
- <code><a href="chent_focus_sw.html">chent_focus_sw()</a></code>
+
+ <code><a href="chent_focus_sw.html">chent_focus_sw()</a></code>
+
</dt>
<dd>Create a chemical compound object for FOCUS Step 1 calculations</dd>
</dl><dl><dt>
-
- <code><a href="FOCUS_Step_12_scenarios.html">FOCUS_Step_12_scenarios</a></code>
+
+ <code><a href="FOCUS_Step_12_scenarios.html">FOCUS_Step_12_scenarios</a></code>
+
</dt>
<dd>Step 1/2 scenario data as distributed with the FOCUS Step 1/2 calculator</dd>
</dl><dl><dt>
-
- <code><a href="PEC_sw_exposit_drainage.html">PEC_sw_exposit_drainage()</a></code>
+
+ <code><a href="PEC_sw_exposit_drainage.html">PEC_sw_exposit_drainage()</a></code>
+
</dt>
<dd>Calculate PEC surface water due to drainage as in Exposit 3</dd>
</dl><dl><dt>
-
- <code><a href="PEC_sw_exposit_runoff.html">PEC_sw_exposit_runoff()</a></code>
+
+ <code><a href="PEC_sw_exposit_runoff.html">PEC_sw_exposit_runoff()</a></code>
+
</dt>
<dd>Calculate PEC surface water due to runoff and erosion as in Exposit 3</dd>
</dl><dl><dt>
-
- <code><a href="perc_runoff_exposit.html">perc_runoff_exposit</a></code>
+
+ <code><a href="perc_runoff_exposit.html">perc_runoff_exposit</a></code>
+
</dt>
<dd>Runoff loss percentages as used in Exposit 3</dd>
</dl><dl><dt>
-
- <code><a href="perc_runoff_reduction_exposit.html">perc_runoff_reduction_exposit</a></code>
+
+ <code><a href="perc_runoff_reduction_exposit.html">perc_runoff_reduction_exposit</a></code>
+
</dt>
<dd>Runoff reduction percentages as used in Exposit</dd>
</dl><dl><dt>
-
- <code><a href="TOXSWA_cwa.html">TOXSWA_cwa</a></code>
+
+ <code><a href="TOXSWA_cwa.html">TOXSWA_cwa</a></code>
+
</dt>
<dd>R6 class for holding TOXSWA water concentration data and associated statistics</dd>
</dl><dl><dt>
-
- <code><a href="read.TOXSWA_cwa.html">read.TOXSWA_cwa()</a></code>
+
+ <code><a href="read.TOXSWA_cwa.html">read.TOXSWA_cwa()</a></code>
+
</dt>
<dd>Read TOXSWA surface water concentrations</dd>
</dl><dl><dt>
-
- <code><a href="plot.TOXSWA_cwa.html">plot(<i>&lt;TOXSWA_cwa&gt;</i>)</a></code>
+
+ <code><a href="plot.TOXSWA_cwa.html">plot(<i>&lt;TOXSWA_cwa&gt;</i>)</a></code>
+
</dt>
<dd>Plot TOXSWA surface water concentrations</dd>
</dl></div><div class="section level2">
<h2 id="classifications-and-indicators">Classifications and indicators<a class="anchor" aria-label="anchor" href="#classifications-and-indicators"></a></h2>
-
- <p class="section-desc"></p><p>Evaluating environmental fate properties</p>
-
- </div><div id="" class="section level2">
-
-
-
+ <div class="section-desc"><p>Evaluating environmental fate properties</p></div>
+
+
+ </div><div class="section level2">
+
+
+
<dl><dt>
-
- <code><a href="SSLRC_mobility_classification.html">SSLRC_mobility_classification()</a></code>
+
+ <code><a href="SSLRC_mobility_classification.html">SSLRC_mobility_classification()</a></code>
+
</dt>
<dd>Determine the SSLRC mobility classification for a chemical substance from its Koc</dd>
</dl><dl><dt>
-
- <code><a href="GUS.html">GUS()</a></code> <code><a href="GUS.html">print(<i>&lt;GUS_result&gt;</i>)</a></code>
+
+ <code><a href="GUS.html">GUS()</a></code> <code><a href="GUS.html">print(<i>&lt;GUS_result&gt;</i>)</a></code>
+
</dt>
<dd>Groundwater ubiquity score based on Gustafson (1989)</dd>
</dl></div><div class="section level2">
<h2 id="work-with-chent-objects-containing-relevant-information">Work with chent objects containing relevant information<a class="anchor" aria-label="anchor" href="#work-with-chent-objects-containing-relevant-information"></a></h2>
-
-
-
- </div><div id="" class="section level2">
-
-
-
+
+
+
+ </div><div class="section level2">
+
+
+
<dl><dt>
-
- <code><a href="endpoint.html">endpoint()</a></code> <code><a href="endpoint.html">soil_DT50()</a></code> <code><a href="endpoint.html">soil_Kfoc()</a></code> <code><a href="endpoint.html">soil_N()</a></code> <code><a href="endpoint.html">soil_sorption()</a></code>
+
+ <code><a href="endpoint.html">endpoint()</a></code> <code><a href="endpoint.html">soil_DT50()</a></code> <code><a href="endpoint.html">soil_Kfoc()</a></code> <code><a href="endpoint.html">soil_N()</a></code> <code><a href="endpoint.html">soil_sorption()</a></code>
+
</dt>
<dd>Retrieve endpoint information from the chyaml field of a chent object</dd>
</dl></div><div class="section level2">
<h2 id="utilities">Utilities<a class="anchor" aria-label="anchor" href="#utilities"></a></h2>
-
-
-
- </div><div id="" class="section level2">
-
-
-
+
+
+
+ </div><div class="section level2">
+
+
+
<dl><dt>
-
- <code><a href="get_vertex.html">get_vertex()</a></code>
+
+ <code><a href="get_vertex.html">get_vertex()</a></code>
+
</dt>
<dd>Fit a parabola through three points</dd>
</dl></div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
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- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
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- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
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+
</body></html>
diff --git a/docs/reference/max_twa.html b/docs/reference/max_twa.html
index 4d469eb..74eeb46 100644
--- a/docs/reference/max_twa.html
+++ b/docs/reference/max_twa.html
@@ -1,51 +1,42 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="If you generate your time series using sawtooth,
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>The maximum time weighted average concentration for a moving window — max_twa • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="The maximum time weighted average concentration for a moving window — max_twa"><meta name="description" content="If you generate your time series using sawtooth,
you need to make sure that the length of the time series allows
for finding the maximum. It is therefore recommended to check this using
plot.one_box using the window size for the argument
-max_twa."><title>The maximum time weighted average concentration for a moving window — max_twa • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="The maximum time weighted average concentration for a moving window — max_twa"><meta property="og:description" content="If you generate your time series using sawtooth,
+max_twa."><meta property="og:description" content="If you generate your time series using sawtooth,
you need to make sure that the length of the time series allows
for finding the maximum. It is therefore recommended to check this using
plot.one_box using the window size for the argument
-max_twa."><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
-<script src="https://oss.maxcdn.com/html5shiv/3.7.3/html5shiv.min.js"></script>
-<script src="https://oss.maxcdn.com/respond/1.4.2/respond.min.js"></script>
-<![endif]--></head><body>
+max_twa."></head><body>
<a href="#main" class="visually-hidden-focusable">Skip to contents</a>
-
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+
<a class="navbar-brand me-2" href="../index.html">pfm</a>
- <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.1</small>
+ <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.3</small>
+
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-
+
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<div class="row">
<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>The maximum time weighted average concentration for a moving window</h1>
+
+ <h1>The maximum time weighted average concentration for a moving window</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/twa.R" class="external-link"><code>R/twa.R</code></a></small>
<div class="d-none name"><code>max_twa.Rd</code></div>
</div>
@@ -65,17 +56,19 @@ for finding the maximum. It is therefore recommended to check this using
<div class="section level2">
<h2 id="arguments">Arguments<a class="anchor" aria-label="anchor" href="#arguments"></a></h2>
- <dl><dt>x</dt>
+
+
+<dl><dt id="arg-x">x<a class="anchor" aria-label="anchor" href="#arg-x"></a></dt>
<dd><p>An object of type <code><a href="one_box.html">one_box</a></code></p></dd>
-<dt>window</dt>
+<dt id="arg-window">window<a class="anchor" aria-label="anchor" href="#arg-window"></a></dt>
<dd><p>The size of the moving window</p></dd>
</dl></div>
<div class="section level2">
<h2 id="details">Details<a class="anchor" aria-label="anchor" href="#details"></a></h2>
- <p>The method working directly on fitted <code>mkinfit</code> objects uses the
+ <p>The method working directly on fitted <code><a href="https://pkgdown.jrwb.de/mkin/reference/mkinfit.html" class="external-link">mkinfit</a></code> objects uses the
equations given in the PEC soil section of the FOCUS guidance and is restricted
SFO, FOMC and DFOP models and to the parent compound</p>
</div>
@@ -109,29 +102,29 @@ EC Document Reference Sanco/10058/2005 version 2.0, 434 pp,
<span class="r-out co"><span class="r-pr">#&gt;</span> parent </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 21 </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
-<span class="r-in"><span><span class="va">pred_FOMC</span> <span class="op">&lt;-</span> <span class="fu">mkinfit</span><span class="op">(</span><span class="st">"FOMC"</span>, <span class="va">FOCUS_2006_C</span>, quiet <span class="op">=</span> <span class="cn">TRUE</span><span class="op">)</span></span></span>
+<span class="r-in"><span><span class="va">pred_FOMC</span> <span class="op">&lt;-</span> <span class="fu"><a href="https://pkgdown.jrwb.de/mkin/reference/mkinfit.html" class="external-link">mkinfit</a></span><span class="op">(</span><span class="st">"FOMC"</span>, <span class="va">FOCUS_2006_C</span>, quiet <span class="op">=</span> <span class="cn">TRUE</span><span class="op">)</span></span></span>
<span class="r-in"><span><span class="fu">max_twa</span><span class="op">(</span><span class="va">pred_FOMC</span><span class="op">)</span></span></span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 21 </span>
<span class="r-out co"><span class="r-pr">#&gt;</span> 18.22124 </span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
</nav></aside></div>
<footer><div class="pkgdown-footer-left">
- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
</div>
<div class="pkgdown-footer-right">
- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
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+
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diff --git a/docs/reference/one_box.character.html b/docs/reference/one_box.character.html
new file mode 100644
index 0000000..b2bfb92
--- /dev/null
+++ b/docs/reference/one_box.character.html
@@ -0,0 +1,8 @@
+<html>
+ <head>
+ <meta http-equiv="refresh" content="0;URL=https://pkgdown.jrwb.de/pfm/reference/one_box.html" />
+ <meta name="robots" content="noindex">
+ <link rel="canonical" href="https://pkgdown.jrwb.de/pfm/reference/one_box.html">
+ </head>
+</html>
+
diff --git a/docs/reference/one_box.mkinfit.html b/docs/reference/one_box.mkinfit.html
new file mode 100644
index 0000000..b2bfb92
--- /dev/null
+++ b/docs/reference/one_box.mkinfit.html
@@ -0,0 +1,8 @@
+<html>
+ <head>
+ <meta http-equiv="refresh" content="0;URL=https://pkgdown.jrwb.de/pfm/reference/one_box.html" />
+ <meta name="robots" content="noindex">
+ <link rel="canonical" href="https://pkgdown.jrwb.de/pfm/reference/one_box.html">
+ </head>
+</html>
+
diff --git a/docs/reference/one_box.numeric.html b/docs/reference/one_box.numeric.html
new file mode 100644
index 0000000..b2bfb92
--- /dev/null
+++ b/docs/reference/one_box.numeric.html
@@ -0,0 +1,8 @@
+<html>
+ <head>
+ <meta http-equiv="refresh" content="0;URL=https://pkgdown.jrwb.de/pfm/reference/one_box.html" />
+ <meta name="robots" content="noindex">
+ <link rel="canonical" href="https://pkgdown.jrwb.de/pfm/reference/one_box.html">
+ </head>
+</html>
+
diff --git a/docs/reference/perc_runoff_exposit.html b/docs/reference/perc_runoff_exposit.html
index 2311d09..a1afbde 100644
--- a/docs/reference/perc_runoff_exposit.html
+++ b/docs/reference/perc_runoff_exposit.html
@@ -1,44 +1,35 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="A table of the loss percentages used in Exposit 3 for the twelve different Koc classes"><title>Runoff loss percentages as used in Exposit 3 — perc_runoff_exposit • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Runoff loss percentages as used in Exposit 3 — perc_runoff_exposit"><meta property="og:description" content="A table of the loss percentages used in Exposit 3 for the twelve different Koc classes"><!-- mathjax --><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/MathJax.js" integrity="sha256-nvJJv9wWKEm88qvoQl9ekL2J+k/RWIsaSScxxlsrv8k=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mathjax/2.7.5/config/TeX-AMS-MML_HTMLorMML.js" integrity="sha256-84DKXVJXs0/F8OTMzX4UR909+jtl4G7SPypPavF+GfA=" crossorigin="anonymous"></script><!--[if lt IE 9]>
-<script src="https://oss.maxcdn.com/html5shiv/3.7.3/html5shiv.min.js"></script>
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-<![endif]--></head><body>
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Runoff loss percentages as used in Exposit 3 — perc_runoff_exposit • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Runoff loss percentages as used in Exposit 3 — perc_runoff_exposit"><meta name="description" content="A table of the loss percentages used in Exposit 3 for the twelve different Koc classes"><meta property="og:description" content="A table of the loss percentages used in Exposit 3 for the twelve different Koc classes"></head><body>
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+
<a class="navbar-brand me-2" href="../index.html">pfm</a>
- <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.1</small>
+ <small class="nav-text text-muted me-auto" data-bs-toggle="tooltip" data-bs-placement="bottom" title="">0.6.3</small>
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+ </ul><ul class="navbar-nav"><li class="nav-item"><form class="form-inline" role="search">
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+
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</nav><div class="container template-reference-topic">
<div class="row">
<main id="main" class="col-md-9"><div class="page-header">
- <img src="" class="logo" alt=""><h1>Runoff loss percentages as used in Exposit 3</h1>
- <small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_exposit_runoff.R" class="external-link"><code>R/PEC_sw_exposit_runoff.R</code></a></small>
+
+ <h1>Runoff loss percentages as used in Exposit 3</h1>
+ <small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/PEC_sw_exposit.R" class="external-link"><code>R/PEC_sw_exposit.R</code></a></small>
<div class="d-none name"><code>perc_runoff_exposit.Rd</code></div>
</div>
@@ -77,37 +68,37 @@ adjacent water body bound to eroding particles</p></dd>
<h2 id="ref-examples">Examples<a class="anchor" aria-label="anchor" href="#ref-examples"></a></h2>
<div class="sourceCode"><pre class="sourceCode r"><code><span class="r-in"><span><span class="fu"><a href="https://rdrr.io/r/base/print.html" class="external-link">print</a></span><span class="op">(</span><span class="va">perc_runoff_exposit</span><span class="op">)</span></span></span>
<span class="r-out co"><span class="r-pr">#&gt;</span> Koc_lower_bound dissolved bound</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> 0-20 0 0.110 0.000</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;20-50 20 0.151 0.000</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;50-100 50 0.197 0.000</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;100-200 100 0.248 0.001</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;200-500 200 0.224 0.004</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;500-1000 500 0.184 0.020</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;1000-2000 1000 0.133 0.042</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;2000-5000 2000 0.084 0.091</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;5000-10000 5000 0.037 0.159</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;10000-20000 10000 0.031 0.192</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;20000-50000 20000 0.014 0.291</span>
-<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;50000 50000 0.001 0.451</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> 0-20 0 [L/kg] 0.110 0.000</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;20-50 20 [L/kg] 0.151 0.000</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;50-100 50 [L/kg] 0.197 0.000</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;100-200 100 [L/kg] 0.248 0.001</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;200-500 200 [L/kg] 0.224 0.004</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;500-1000 500 [L/kg] 0.184 0.020</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;1000-2000 1000 [L/kg] 0.133 0.042</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;2000-5000 2000 [L/kg] 0.084 0.091</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;5000-10000 5000 [L/kg] 0.037 0.159</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;10000-20000 10000 [L/kg] 0.031 0.192</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;20000-50000 20000 [L/kg] 0.014 0.291</span>
+<span class="r-out co"><span class="r-pr">#&gt;</span> &gt;50000 50000 [L/kg] 0.001 0.451</span>
</code></pre></div>
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<div class="d-none name"><code>perc_runoff_reduction_exposit.Rd</code></div>
</div>
@@ -103,23 +94,23 @@ The variant 3.01a2 was introduced for consistency with previous calculations per
<span class="r-out co"><span class="r-pr">#&gt;</span> </span>
</code></pre></div>
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index 41f1078..b65586c 100644
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<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="Properties of the predefined scenarios used at Tier 1, Tier 2A and Tier 3A for the
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+scenario and model adjustment factors from p. 15 and p. 17 are included."><meta property="og:description" content="Properties of the predefined scenarios used at Tier 1, Tier 2A and Tier 3A for the
concentration in soil as given in the EFSA guidance (2015, p. 13/14). Also, the
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- <img src="" class="logo" alt=""><h1>Properties of the predefined scenarios from the EFSA guidance from 2015</h1>
+
+ <h1>Properties of the predefined scenarios from the EFSA guidance from 2015</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/soil_scenario_data_EFSA_2015.R" class="external-link"><code>R/soil_scenario_data_EFSA_2015.R</code></a></small>
<div class="d-none name"><code>soil_scenario_data_EFSA_2015.Rd</code></div>
</div>
@@ -91,23 +82,23 @@ active substances in soil. <em>EFSA Journal</em> <b>13</b>(4) 4093
<span class="r-out co"><span class="r-pr">#&gt;</span> CLS 4</span>
</code></pre></div>
</div>
- </main><aside class="col-md-3"><nav id="toc"><h2>On this page</h2>
+ </main><aside class="col-md-3"><nav id="toc" aria-label="Table of contents"><h2>On this page</h2>
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- <p></p><p>Developed by Johannes Ranke.</p>
+ <p>Developed by Johannes Ranke.</p>
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- <p></p><p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.0.7.</p>
+ <p>Site built with <a href="https://pkgdown.r-lib.org/" class="external-link">pkgdown</a> 2.1.0.</p>
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diff --git a/docs/reference/soil_scenario_data_EFSA_2017.html b/docs/reference/soil_scenario_data_EFSA_2017.html
index b1adfab..1a6157a 100644
--- a/docs/reference/soil_scenario_data_EFSA_2017.html
+++ b/docs/reference/soil_scenario_data_EFSA_2017.html
@@ -1,47 +1,38 @@
<!DOCTYPE html>
-<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><meta name="description" content="Properties of the predefined scenarios used at Tier 1, Tier 2A and Tier 3A for the
+<!-- Generated by pkgdown: do not edit by hand --><html lang="en"><head><meta http-equiv="Content-Type" content="text/html; charset=UTF-8"><meta charset="utf-8"><meta http-equiv="X-UA-Compatible" content="IE=edge"><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><title>Properties of the predefined scenarios from the EFSA guidance from 2017 — soil_scenario_data_EFSA_2017 • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Properties of the predefined scenarios from the EFSA guidance from 2017 — soil_scenario_data_EFSA_2017"><meta name="description" content="Properties of the predefined scenarios used at Tier 1, Tier 2A and Tier 3A for the
concentration in soil as given in the EFSA guidance (2017, p. 14/15). Also, the
-scenario and model adjustment factors from p. 16 and p. 18 are included."><title>Properties of the predefined scenarios from the EFSA guidance from 2017 — soil_scenario_data_EFSA_2017 • pfm</title><script src="../deps/jquery-3.6.0/jquery-3.6.0.min.js"></script><meta name="viewport" content="width=device-width, initial-scale=1, shrink-to-fit=no"><link href="../deps/bootstrap-5.3.1/bootstrap.min.css" rel="stylesheet"><script src="../deps/bootstrap-5.3.1/bootstrap.bundle.min.js"></script><!-- Font Awesome icons --><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/all.min.css" integrity="sha256-mmgLkCYLUQbXn0B1SRqzHar6dCnv9oZFPEC1g1cwlkk=" crossorigin="anonymous"><link rel="stylesheet" href="https://cdnjs.cloudflare.com/ajax/libs/font-awesome/5.12.1/css/v4-shims.min.css" integrity="sha256-wZjR52fzng1pJHwx4aV2AO3yyTOXrcDW7jBpJtTwVxw=" crossorigin="anonymous"><!-- bootstrap-toc --><script src="https://cdn.jsdelivr.net/gh/afeld/bootstrap-toc@v1.0.1/dist/bootstrap-toc.min.js" integrity="sha256-4veVQbu7//Lk5TSmc7YV48MxtMy98e26cf5MrgZYnwo=" crossorigin="anonymous"></script><!-- headroom.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/headroom.min.js" integrity="sha256-AsUX4SJE1+yuDu5+mAVzJbuYNPHj/WroHuZ8Ir/CkE0=" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/headroom/0.11.0/jQuery.headroom.min.js" integrity="sha256-ZX/yNShbjqsohH1k95liqY9Gd8uOiE1S4vZc+9KQ1K4=" crossorigin="anonymous"></script><!-- clipboard.js --><script src="https://cdnjs.cloudflare.com/ajax/libs/clipboard.js/2.0.6/clipboard.min.js" integrity="sha256-inc5kl9MA1hkeYUt+EC3BhlIgyp/2jDIyBLS6k3UxPI=" crossorigin="anonymous"></script><!-- search --><script src="https://cdnjs.cloudflare.com/ajax/libs/fuse.js/6.4.6/fuse.js" integrity="sha512-zv6Ywkjyktsohkbp9bb45V6tEMoWhzFzXis+LrMehmJZZSys19Yxf1dopHx7WzIKxr5tK2dVcYmaCk2uqdjF4A==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/autocomplete.js/0.38.0/autocomplete.jquery.min.js" integrity="sha512-GU9ayf+66Xx2TmpxqJpliWbT5PiGYxpaG8rfnBEk1LL8l1KGkRShhngwdXK1UgqhAzWpZHSiYPc09/NwDQIGyg==" crossorigin="anonymous"></script><script src="https://cdnjs.cloudflare.com/ajax/libs/mark.js/8.11.1/mark.min.js" integrity="sha512-5CYOlHXGh6QpOFA/TeTylKLWfB3ftPsde7AnmhuitiTX4K5SqCLBeKro6sPS8ilsz1Q4NRx3v8Ko2IBiszzdww==" crossorigin="anonymous"></script><!-- pkgdown --><script src="../pkgdown.js"></script><meta property="og:title" content="Properties of the predefined scenarios from the EFSA guidance from 2017 — soil_scenario_data_EFSA_2017"><meta property="og:description" content="Properties of the predefined scenarios used at Tier 1, Tier 2A and Tier 3A for the
+scenario and model adjustment factors from p. 16 and p. 18 are included."><meta property="og:description" content="Properties of the predefined scenarios used at Tier 1, Tier 2A and Tier 3A for the
concentration in soil as given in the EFSA guidance (2017, p. 14/15). Also, the
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- <img src="" class="logo" alt=""><h1>Properties of the predefined scenarios from the EFSA guidance from 2017</h1>
+
+ <h1>Properties of the predefined scenarios from the EFSA guidance from 2017</h1>
<small class="dont-index">Source: <a href="https://github.com/jranke/pfm/blob/HEAD/R/soil_scenario_data_EFSA_2017.R" class="external-link"><code>R/soil_scenario_data_EFSA_2017.R</code></a></small>
<div class="d-none name"><code>soil_scenario_data_EFSA_2017.Rd</code></div>
</div>
@@ -124,23 +115,23 @@ active substances in soil. <em>EFSA Journal</em> <b>15</b>(10) 4982
<span class="r-out co"><span class="r-pr">#&gt;</span> And 3 more differences ...</span>
</code></pre></div>
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diff --git a/docs/reference/soil_sorption.html b/docs/reference/soil_sorption.html
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new file mode 100644
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