aboutsummaryrefslogtreecommitdiff
path: root/man/soil_scenario_data_EFSA_2017.Rd
diff options
context:
space:
mode:
Diffstat (limited to 'man/soil_scenario_data_EFSA_2017.Rd')
-rw-r--r--man/soil_scenario_data_EFSA_2017.Rd25
1 files changed, 25 insertions, 0 deletions
diff --git a/man/soil_scenario_data_EFSA_2017.Rd b/man/soil_scenario_data_EFSA_2017.Rd
new file mode 100644
index 0000000..aeaacac
--- /dev/null
+++ b/man/soil_scenario_data_EFSA_2017.Rd
@@ -0,0 +1,25 @@
+% Generated by roxygen2: do not edit by hand
+% Please edit documentation in R/soil_scenario_data_EFSA_2017.R
+\docType{data}
+\name{soil_scenario_data_EFSA_2017}
+\alias{soil_scenario_data_EFSA_2017}
+\title{Properties of the predefined scenarios from the EFSA guidance from 2017}
+\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. \code{rho} is the dry bulk density of the top soil.}
+\source{
+EFSA (European Food Safety Authority) (2017)
+ EFSA guidance document for predicting environmental concentrations
+ of active substances of plant protection products and transformation products of these
+ active substances in soil. \emph{EFSA Journal} \bold{15}(10) 4982
+ doi:10.2903/j.efsa.2017.4982
+}
+\description{
+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.
+}
+\examples{
+soil_scenario_data_EFSA_2017
+}
+\keyword{datasets}

Contact - Imprint