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Preface | ||
1 | A U.S. Industry Viewpoint on the Design and Use of the Terrestrial Field Dissipation Study | 1 |
2 | Terrestrial Field Dissipation Studies: A Review of Guidance and Guidelines | 14 |
3 | Design of a Terrestrial Field Leaching and Dissipation Study within the European Registration Process | 31 |
4 | Terrestrial Field Soil Dissipation Studies in Pesticide Environmental Risk Assessment | 43 |
5 | Field Dissipation Studies: The Measurement of Zero-Time Residues | 54 |
6 | Sources and Magnitudes of Variability in the Terrestrial Field Dissipation of Pesticides | 73 |
7 | Spatial Variability of Herbicide Sorption on Soil | 88 |
8 | Effect of Variability of Soil Properties as a Function of Depth on Pesticide Sorption-Desorption | 102 |
9 | In Situ Measurements of Soil Hydrology in a Field Dissipation Study: Implications for Understanding Pesticide Residue Movement | 117 |
10 | Electronic Soil Moisture Measurements in Federal Insecticide, Fungicide, and Rodenticide Act Field Dissipation and Prospective Groundwater Studies | 137 |
11 | Field Soil Dissipation [[superscript 14]C]ET-751 (Pyraflufen-ethyl) in Bare Ground in California: High Specific Activity Radiolabeled Test Substance and Small Plot Design Afford Excellent Method To Measure Field Dissipation | 156 |
12 | Diazinon in Apple Orchards: Dissipation from Vegetation and Exposure to Non-Target Organisms | 170 |
13 | Field Studies of Imidacloprid Distribution Following Application to Soil through a Drip Irrigation Systems | 189 |
14 | Environmental Fate of Fluometuron in a Mississippi Delta Lake Watershed | 206 |
15 | Leaching of Post-Emergence Herbicides into Shallow Groundwater during Transition from Conventional Tillage to No-Tillage on Des Moines Lobe Soils of Central Iowa | 226 |
16 | Photostability of Two Fungicides on Spray Application Monitors: Effect of Paper and Formulation Type | 244 |
17 | Experiments in a Volatilization Chamber under Simulated Outdoor Conditions: A Contribution to a Better Understanding of Field Dissipation Studies | 257 |
18 | Determining the Dissipation and Potential Offsite Movement of Pendimethalin through a Monitoring Survey and Environmental Modeling | 273 |
19 | Relating Field Dissipation and Laboratory Studies through Modeling: Chlorothalonil Dissipation after Multiple Applications in Peanuts | 287 |
20 | Modeling the Effect of Precision Agriculture: Pesticide Losses of Surface Waters | 304 |
Author Index | 321 | |
Subject Index | 323 |
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