Crop related aspects of crop canopy spray interception and spray drift from downward directed spray applications in field crops

When spraying Plant Protection Products (PPPs), spray drift and crop interception are two important factors which influence the exposure of aquatic organisms in surface water to PPP. This exposure occurs either in a direct way via deposition of spray droplets on the surface water through spray drift or in an indirect way via the exposure of the soil underneath plants followed by transport of PPP to the surface water by drainage and/or runoff. Edge of field scenarios for the exposure of aquatic organisms in surface water were developed for downward directed spray applications in field crops. A software tool, DRAINBOW, is being developed to facilitate the calculations needed to assess the exposure of aquatic organisms in surface water. Authorisation is given based on the PPP label, which specifies among others the dose, the application technique (e.g. spraying, seed treatment), timing and frequency of the application and possible mitigation measures (e.g. spray drift reducing technologies, width of a crop-free buffer zone). Because spray drift and crop interception depend on the information specified on the label it is necessary to link all these parameters carefully. This report describes the data and the methods used in the DRAINBOW tool to link spray drift and crop interception to the information on the PPP label for downward directed spray applications. Spray drift deposition on surface water is shown to be different depending on spray drift reducing technology class (DRT), crop dependent last nozzle position, width of the crop-free buffer zone, crop growth stage and position and width of the surface water.

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Main Authors: van de Zande, J.C., ter Horst, M.M.S.
Format: External research report biblioteca
Language:English
Published: Wageningen Plant Research
Subjects:Life Science,
Online Access:https://research.wur.nl/en/publications/crop-related-aspects-of-crop-canopy-spray-interception-and-spray-
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spelling dig-wur-nl-wurpubs-5685452024-09-13 van de Zande, J.C. ter Horst, M.M.S. External research report Crop related aspects of crop canopy spray interception and spray drift from downward directed spray applications in field crops 2019 When spraying Plant Protection Products (PPPs), spray drift and crop interception are two important factors which influence the exposure of aquatic organisms in surface water to PPP. This exposure occurs either in a direct way via deposition of spray droplets on the surface water through spray drift or in an indirect way via the exposure of the soil underneath plants followed by transport of PPP to the surface water by drainage and/or runoff. Edge of field scenarios for the exposure of aquatic organisms in surface water were developed for downward directed spray applications in field crops. A software tool, DRAINBOW, is being developed to facilitate the calculations needed to assess the exposure of aquatic organisms in surface water. Authorisation is given based on the PPP label, which specifies among others the dose, the application technique (e.g. spraying, seed treatment), timing and frequency of the application and possible mitigation measures (e.g. spray drift reducing technologies, width of a crop-free buffer zone). Because spray drift and crop interception depend on the information specified on the label it is necessary to link all these parameters carefully. This report describes the data and the methods used in the DRAINBOW tool to link spray drift and crop interception to the information on the PPP label for downward directed spray applications. Spray drift deposition on surface water is shown to be different depending on spray drift reducing technology class (DRT), crop dependent last nozzle position, width of the crop-free buffer zone, crop growth stage and position and width of the surface water. en Wageningen Plant Research application/pdf https://research.wur.nl/en/publications/crop-related-aspects-of-crop-canopy-spray-interception-and-spray- 10.18174/514310 https://edepot.wur.nl/514310 Life Science (c) publisher Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic Life Science
Life Science
spellingShingle Life Science
Life Science
van de Zande, J.C.
ter Horst, M.M.S.
Crop related aspects of crop canopy spray interception and spray drift from downward directed spray applications in field crops
description When spraying Plant Protection Products (PPPs), spray drift and crop interception are two important factors which influence the exposure of aquatic organisms in surface water to PPP. This exposure occurs either in a direct way via deposition of spray droplets on the surface water through spray drift or in an indirect way via the exposure of the soil underneath plants followed by transport of PPP to the surface water by drainage and/or runoff. Edge of field scenarios for the exposure of aquatic organisms in surface water were developed for downward directed spray applications in field crops. A software tool, DRAINBOW, is being developed to facilitate the calculations needed to assess the exposure of aquatic organisms in surface water. Authorisation is given based on the PPP label, which specifies among others the dose, the application technique (e.g. spraying, seed treatment), timing and frequency of the application and possible mitigation measures (e.g. spray drift reducing technologies, width of a crop-free buffer zone). Because spray drift and crop interception depend on the information specified on the label it is necessary to link all these parameters carefully. This report describes the data and the methods used in the DRAINBOW tool to link spray drift and crop interception to the information on the PPP label for downward directed spray applications. Spray drift deposition on surface water is shown to be different depending on spray drift reducing technology class (DRT), crop dependent last nozzle position, width of the crop-free buffer zone, crop growth stage and position and width of the surface water.
format External research report
topic_facet Life Science
author van de Zande, J.C.
ter Horst, M.M.S.
author_facet van de Zande, J.C.
ter Horst, M.M.S.
author_sort van de Zande, J.C.
title Crop related aspects of crop canopy spray interception and spray drift from downward directed spray applications in field crops
title_short Crop related aspects of crop canopy spray interception and spray drift from downward directed spray applications in field crops
title_full Crop related aspects of crop canopy spray interception and spray drift from downward directed spray applications in field crops
title_fullStr Crop related aspects of crop canopy spray interception and spray drift from downward directed spray applications in field crops
title_full_unstemmed Crop related aspects of crop canopy spray interception and spray drift from downward directed spray applications in field crops
title_sort crop related aspects of crop canopy spray interception and spray drift from downward directed spray applications in field crops
publisher Wageningen Plant Research
url https://research.wur.nl/en/publications/crop-related-aspects-of-crop-canopy-spray-interception-and-spray-
work_keys_str_mv AT vandezandejc croprelatedaspectsofcropcanopysprayinterceptionandspraydriftfromdownwarddirectedsprayapplicationsinfieldcrops
AT terhorstmms croprelatedaspectsofcropcanopysprayinterceptionandspraydriftfromdownwarddirectedsprayapplicationsinfieldcrops
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