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Modelling aggregate exposure to pesticides from dietary and crop spray sources in UK residents

机译:模拟英国居民从饮食和农作物喷雾源中接触农药的总量

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摘要

Human exposure to pesticide mixtures can occur from the diet and other sources. Realistic exposure and risk assessments should include multiple sources and compounds and include the relative hazards of the different compounds. The EU-funded Euromix project is developing new web-based tools to facilitate these calculations. A case study is presented that exemplifies their use for a population of UK residents, including exposure from crop-spraying. A UK pesticide usage survey provided information on real pesticide combinations applied to crops of wheat, potatoes, sugar beet and dessert apples. This information was combined with outputs from two alternative simulation models of spray drift to estimate dermal, oral and inhalation exposures of residents. These non-dietary exposures were combined with dietary exposure estimates using the Monte Carlo Risk Assessment software to produce a distribution of aggregated and cumulative exposures. Compounds are weighted by relative potency to generate a measure of overall risk. Uncertainty quantification was also included in the distribution of exposures. These tools are flexible to allow diverse sources of exposure and can provide important information to decision-makers and help to prioritise testing of pesticide mixtures. Including non-dietary sources changed the prioritisation of pesticide mixtures, when compared to dietary exposure alone.Electronic supplementary materialThe online version of this article (10.1007/s11356-019-04440-7) contains supplementary material, which is available to authorized users.
机译:饮食和其他来源可能会使人接触农药混合物。现实的暴露和风险评估应包括多种来源和化合物,并包括不同化合物的相对危害。由欧盟资助的Euromix项目正在开发新的基于Web的工具,以促进这些计算。提出了一个案例研究,举例说明了其在英国居民中的使用,包括作物喷洒造成的暴露。英国的农药使用情况调查提供了有关应用于小麦,土豆,甜菜和甜点苹果的农作物的实际农药组合信息。该信息与喷雾漂移的两个替代模拟模型的输出相结合,以估计居民的皮肤,口腔和吸入暴露量。使用蒙特卡洛风险评估软件将这些非饮食暴露与饮食暴露估计值相结合,以得出累积和累积暴露的分布。通过相对效力对化合物进行加权,以生成总体风险度量。不确定性量化也包括在暴露的分布中。这些工具非常灵活,可以提供多种暴露源,并且可以为决策者提供重要信息,并有助于对农药混合物进行优先测试。与仅饮食接触相比,包括非饮食来源改变了农药混合物的优先次序。电子补充材料本文的在线版本(10.1007 / s11356-019-04440-7)包含补充材料,授权用户可以使用。

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