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实施物理化学性质对农药叶面渗透的影响及其对估计植物中农药挥发的潜力。

Implementation of the effects of physicochemical properties on the foliar penetration of pesticides and its potential for estimating pesticide volatilization from plants.

机构信息

UMR 1402 ECOSYS, INRA, AgroParisTech, Université Paris-Saclay, 78850, Thiverval-Grignon, France.

UMR 1402 ECOSYS, INRA, AgroParisTech, Université Paris-Saclay, 78850, Thiverval-Grignon, France.

出版信息

Sci Total Environ. 2016 Apr 15;550:1022-1031. doi: 10.1016/j.scitotenv.2016.01.058. Epub 2016 Feb 6.

Abstract

Volatilization from plant foliage is known to have a great contribution to pesticide emission to the atmosphere. However, its estimation is still difficult because of our poor understanding of processes occurring at the leaf surface. A compartmental approach for dissipation processes of pesticides applied on the leaf surface was developed on the base of experimental study performed under controlled conditions using laboratory volatilization chamber. This approach was combined with physicochemical properties of pesticides and was implemented in SURFATM-Pesticides model in order to predict pesticide volatilization from plants in a more mechanistic way. The new version of SURFATM-Pesticide model takes into account the effect of formulation on volatilization and leaf penetration. The model was evaluated in terms of 3 pesticides applied on plants at the field scale (chlorothalonil, fenpropidin and parathion) which display a wide range of volatilization rates. The comparison of modeled volatilization fluxes with measured ones shows an overall good agreement for the three tested compounds. Furthermore the model confirms the considerable effect of the formulation on the rate of the decline in volatilization fluxes especially for systemic products. However, due to the lack of published information on the substances in the formulations, factors accounting for the effect of formulation are described empirically. A sensitivity analysis shows that in addition to vapor pressure, the octanol-water partition coefficient represents important physicochemical properties of pesticides affecting pesticide volatilization from plants. Finally the new version of SURFATM-Pesticides is a prospecting tool for key processes involved in the description of pesticide volatilization from plants.

摘要

植物叶片的挥发作用对农药向大气中的排放有很大的贡献。然而,由于我们对叶片表面发生的过程了解甚少,因此其估算仍然很困难。在实验室挥发室中进行的受控条件下的实验研究的基础上,开发了一种用于预测施用于叶片表面的农药消散过程的分区方法。该方法结合了农药的物理化学性质,并在 SURFATM-Pesticides 模型中实施,以便以更机械的方式预测植物中农药的挥发。新版本的 SURFATM-Pesticide 模型考虑了制剂对挥发和叶片穿透的影响。根据在田间尺度上应用于植物的 3 种农药(百菌清、苯醚菊酯和对硫磷)进行了模型评估,这些农药具有广泛的挥发率。模型模拟的挥发通量与实测通量的比较表明,对于三种测试化合物,总体上具有良好的一致性。此外,该模型证实了制剂对挥发通量下降率的显著影响,特别是对系统性产品。然而,由于制剂中物质的缺乏发表信息,描述制剂影响的因素是经验性的。敏感性分析表明,除蒸气压外,辛醇-水分配系数也是影响植物中农药挥发的重要物理化学性质。最后,新版本的 SURFATM-Pesticides 是描述植物中农药挥发的关键过程的探索工具。

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