Department of Environmental Science and Engineering, Beijing University of Chemical Technology, Beijing, 100029, China.
Environ Monit Assess. 2022 Sep 7;194(10):737. doi: 10.1007/s10661-022-10423-y.
Solvents, components of pesticide emulsifiable concentrates (ECs), emit quantities of volatile organic compounds (VOCs) into the atmosphere. In the air, their active involvement in oxidative chemical reactions with oxidants exposed to ultraviolet solar radiation can result in the formation of ozone. The quantitative assessment of VOC emissions from agricultural pesticide applications remains hampered by many factors, especially the volatility coefficient of solvents in pesticides. Therefore, this study identified solvents in 20 widely used pesticide products in China. The volatility coefficients of the solvents were investigated based on a spraying test to evaluate VOC emissions from agricultural pesticide applications and their ozone formation potential (OFP). The results suggest that VOC emissions from agricultural pesticide applications amount to 0.60 Mt in 2017, with insecticides, fungicides, and herbicides contributing 0.39 Mt, 0.12 Mt, and 0.09 Mt of VOCs, respectively. Since VOC emission and maximum incremental reactivity (MIR) led to an OFP value (2.1 g ozone/g product) for insecticides, a primary consideration should be to decrease use of solvents with high volatility coefficients and large MIR values in insecticide products. This work could provide valuable insights regarding response options to reduce VOC emissions and ozone formation.
溶剂是农药乳油(EC)的组成部分,会向大气中排放大量挥发性有机化合物(VOC)。在空气中,它们与暴露在紫外太阳辐射下的氧化剂发生氧化化学反应,会导致臭氧的形成。由于许多因素的影响,特别是农药中溶剂的挥发系数,农业农药应用中 VOC 排放的定量评估仍然受到阻碍。因此,本研究确定了中国 20 种广泛使用的农药产品中的溶剂。基于喷雾测试,调查了溶剂的挥发系数,以评估农业农药应用中的 VOC 排放及其臭氧形成潜力(OFP)。结果表明,2017 年农业农药应用的 VOC 排放量为 0.60 Mt,其中杀虫剂、杀菌剂和除草剂分别贡献了 0.39 Mt、0.12 Mt 和 0.09 Mt 的 VOC。由于 VOC 排放和最大增量反应性(MIR)导致杀虫剂的 OFP 值(2.1 g 臭氧/g 产品)较高,因此应优先考虑减少杀虫剂产品中高挥发系数和大 MIR 值的溶剂的使用。这项工作可以为减少 VOC 排放和臭氧形成提供有价值的思路。