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首页> 外文期刊>Environmental Science & Technology >Foliar Photodegradation in Pesticide Fate Modeling: Development and Evaluation of the Pesticide Dissipation from Agricultural Land (PeDAL) Model
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Foliar Photodegradation in Pesticide Fate Modeling: Development and Evaluation of the Pesticide Dissipation from Agricultural Land (PeDAL) Model

机译:农药命运建模中的叶面光降解:农业用地农业土地农业耗散的发展与评价

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摘要

Pesticide dissipation from plant surfaces depends on a variety of factors including meteorological conditions, the pesticide's physicochemical properties, and plant characteristics. Models already exist for describing pesticide behavior in agriculture fields; however, they do not account for pesticide-specific, condition-specific foliar photodegradation and the importance of this component in such models has not yet been investigated. We describe here the Pesticide Dissipation from Agricultural Land (PeDAL) model, which combines (a) multiphase partitioning to predict volatilization, (b) a new kinetics module for predicting photodegradation on leaf surfaces under varying light conditions based on location and timing, and (c) a generic foliar penetration component. The PeDAL model was evaluated by comparing measured pesticide dissipation rates from field experiments, described as the time for the pesticide concentration on leaves to decrease by half (DT_(50)), to ones generated by the model when using the reported field conditions. A sensitivity analysis of the newly developed foliar photodegradation component was conducted. We also showed how the PeDAL could be used by applicators and regulatory agencies. First, we used the model to examine how pesticide application timing affects dissipation rates. Second, we demonstrated how the model can be used to produce emission flux values for use in atmospheric dispersion and transport models.
机译:来自植物表面的农药耗散取决于各种因素,包括气象条件,农药的物理化学性质和植物特征。已经存在的模型用于描述农业领域的农药行为;然而,他们不考虑农药特异性,条件特异性的叶酸光降解,并且尚未调查该组分在这些模型中的重要性。我们在这里描述了农业用地(踏板)模型的农药耗散,它结合了(a)多相分区以预测挥发,(b)一种新的动力学模块,用于基于位置和定时在不同光线下预测叶面上的光降解,( c)通用叶面渗透组分。通过比较来自现场实验的测量的农药耗散速率来评估踏板模型,所述农药耗散率被描述为在叶片上的农药浓度降低一半(DT_(50)),在使用报告的现场条件时由模型产生的时间。进行了新开发的叶面光降解组分的敏感性分析。我们还表明申请人和监管机构如何使用踏板。首先,我们使用该模型来检查农药应用时间如何影响耗散率。其次,我们证明了如何使用该模型用于产生用于大气分散和运输模型的发射通量值。

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  • 来源
    《Environmental Science & Technology 》 |2021年第8期| 4842-4850| 共9页
  • 作者单位

    Department of Chemistry & Biochemistry Utah State University Logan Utah 84322 United States;

    Department of Chemistry & Biochemistry Utah State University Logan Utah 84322 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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