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首页> 外文期刊>The Science of the Total Environment >Effect of vegetative filter strip pesticide residue degradation assumptions for environmental exposure assessments
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Effect of vegetative filter strip pesticide residue degradation assumptions for environmental exposure assessments

机译:营养滤纸条农药残留降解假设对环境暴露评估的影响

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摘要

AbstractUnderstanding and simulating the fate and transport of pesticides from a field to adjacent receiving water bodies is critical for estimating long-term environmental exposure concentrations (EECs) in regulatory higher-tier environmental exposure assessments (EEA). The potential of field mitigation practices like vegetative filter strips (VFS) to reduce pesticide pollution is receiving increasing attention. Previous research has proposed a modeling framework that links the US Environmental Protection Agency's (US-EPA) PRZM/EXAMS higher-tier EEA with a process-based VFS model (VFSMOD). This framework was updated to consider degradation and carryover of pesticide residue trapped in the VFS. However, there is disagreement on pesticide degradation assumptions among different regional EEA regulations (i.e. US or European Union), and in particular on how temperature and soil moisture dynamics may affect EECs. This research updated the VFS modeling framework to consider four degradation assumptions and determine if VFS residues and/or EECs differed with each assumption. Two model pesticides (mobile-labile and immobile-persistent) were evaluated for three distinct agroecological scenarios (continental row-crop agriculture, wet maritime agriculture, and dry Mediterranean intensive horticulture) with receiving water bodies and VFS lengths from 0 to 9m. The degradation assumption was important in long-term assessments to predict VFS pesticide residues (statistically different atp<0.01). However, due to the relatively small contribution of residues on the total pesticide mass moving through the VFS, degradation assumptions had a negligible impact on EECs. This indicates that, while important differences exist between EU or US EEAs, the choice of pesticide degradation assumption is not a main source of these differences.Graphical abstractDisplay OmittedHighlightsUpdated modeling framework to consider pesticide residues for exposure assessmentsDegradation assumption important in long-term assessment of filter strip residuesResidue degradation assumption negligible for environmental exposure concentrationsVarious regulatory approaches result in similar higher-tier exposure assessments.
机译: 摘要 了解并模拟农药从田地到邻近接收水体的命运和运输对于估算长期环境暴露浓度至关重要(欧洲经济共同体(EEC))。诸如植物滤纸(VFS)之类的田间减缓措施减少农药污染的潜力正在日益受到关注。先前的研究提出了一个建模框架,该框架将美国环境保护局(US-EPA)的PRZM / EXAMS更高层EEA与基于流程的VFS模型(VFSMOD)链接在一起。更新了该框架,以考虑降解和残留在VFS中的农药残留。但是,在不同的区域EEA法规(即美国或欧洲联盟)之间,农药降解的假设并不一致,尤其是温度和土壤水分动态如何影响EEC。这项研究更新了VFS建模框架,以考虑四个退化假设,并确定每个假设中VFS残基和/或EEC是否不同。针对三种截然不同的农业生态情景(大陆行作农业,湿海事农业和地中海干燥集约园艺)对两种模式农药(不稳定的移动性和持久的移动性)进行了评估,接收水体和VFS长度为0至9m。降解假设在预测VFS农药残留的长期评估中很重要(在 p <0.01处统计差异)。但是,由于残留物对通过VFS的农药总量的贡献相对较小,因此降解假设对EEC的影响可忽略不计。这表明,尽管欧盟或美国EEA之间存在重要差异,但农药降解假设的选择并不是这些差异的主要来源。 图形摘要 省略显示 突出显示 将建模框架更新为考虑农药残留量进行暴露评估 降解假设对滤纸条残留物的长期评估很重要 对于环境暴露浓度可忽略不计的残留物降解假设 各种监管方法也会导致类似的更高层次的暴露评估。

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