From e3bc264df69f892e9ad990be22d3ec1b22041daa Mon Sep 17 00:00:00 2001
From: Johannes Ranke
Date: Wed, 17 Jun 2020 13:37:59 +0200
Subject: TSCF estimation equations, update docs
Briggs et al. (1982) and Dettenmaier et al. (2009)
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docs/reference/soil_scenario_data_EFSA_2017.html | 53 +++++++++++-------------
1 file changed, 24 insertions(+), 29 deletions(-)
(limited to 'docs/reference/soil_scenario_data_EFSA_2017.html')
diff --git a/docs/reference/soil_scenario_data_EFSA_2017.html b/docs/reference/soil_scenario_data_EFSA_2017.html
index f5044e7..7e8044e 100644
--- a/docs/reference/soil_scenario_data_EFSA_2017.html
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Properties of the predefined scenarios from the EFSA guidance from 2017 — soil_scenario_data_EFSA_2017 • pfm
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Reference
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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.
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Format
A data frame with one row for each scenario. Row names are the scenario codes,
e.g. CTN for the Northern scenario for the total concentration in soil. Columns are
mostly self-explanatory. rho is the dry bulk density of the top soil.
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Source
EFSA (European Food Safety Authority) (2017)
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of active substances of plant protection products and transformation products of these
active substances in soil. EFSA Journal15(10) 4982
doi:10.2903/j.efsa.2017.4982
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Examples
soil_scenario_data_EFSA_2017
#> Zone Country T_arit T_arr Texture f_om theta_fc rho f_sce f_mod
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#> CLC Châteaudun 589
#> CLS Sevilla 526