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Development of a Multimedia Model for the Fate Prediction of Hydrocarbon Fluids in Agrochemical Formulations

机译:农药配方中烃类流体命运预测的多媒体模型的开发

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Hydrocarbon (HC) fluids are effective inerts in pesticide formulations. These fluids consist of volatile organic compounds (VOCs) that are assumed to be completely volatilized and undergo subsequent atmospheric reaction that may contribute to ozone formation during field use. However, these assumptions are based on laboratory evaporation tests, which fail to account for other environmentally relevant and competitive fate processes, such as biodegradation, soil sorption, runoff, and leaching. If appropriate input parameters are known, or can be reliably estimated, mass balance multimedia models can be used to characterize the importance and uncertainty of various fate processes and provide a more realistic assessment of the potential contribution to ozone formation. A model has been developed and applied to an agricultural field application scenario. Preliminary results suggest biodegradation and soil sorption are significant fate processes that can reduce the mass of HC VOCs entering the atmosphere by volatilization. The implications of applying multimedia models in assessing potential ozone formation from HC fluids in agricultural uses are further highlighted and preliminary laboratory work to confirm model findings is also discussed.
机译:碳氢化合物(HC)液体是农药制剂中的有效惰性成分。这些流体由挥发性有机化合物(VOC)组成,这些挥发性有机化合物被假定为已完全挥发,并会随后发生大气反应,这可能会导致在田间使用期间形成臭氧。但是,这些假设是基于实验室蒸发测试得出的,该测试无法说明其他与环境相关的竞争性命运过程,例如生物降解,土壤吸附,径流和浸出。如果已知适当的输入参数或可以可靠地估计出适当的输入参数,则可以使用质量平衡多媒体模型来表征各种命运过程的重要性和不确定性,并提供对臭氧形成的潜在贡献的更现实的评估。已经开发了一种模型并将其应用于农田应用场景。初步结果表明,生物降解和土壤吸附是重要的命运过程,可以减少挥发到大气中的HC VOC的质量。进一步强调了应用多媒体模型评估农业用途中的HC液中潜在的臭氧形成的可能性,并讨论了初步实验室工作以确认模型发现。

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