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Rate of pesticide volatilization from soil: an experimental approach with a wind tunnel system applied to trifluralin

机译:农药从土壤中挥发的速率:风洞系统应用于氟乐灵的实验方法

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Pesticide volatilization to the atmosphere may be a major pathway of dissipation closely linked with environmental, physico-chemical and technical factors. Understanding the volatilization process requires systems that make it possible to control some of these factors. Wind tunnels meet to these criteria. The volatilization flux is determined from a mass balance, using the difference in atmospheric pesticide concentration between the entrance and the exit of the tunnel and the airflow rate. An experiment was carried out in June 2000 to study the repeatability of this technique. Volatilization of trifluralin was measured in three wind tunnels for 8 days with a sampling period varying between 3 h and 2 days. Pesticide concentration was determined by trapping by XAD-2 resin in a two-stage cartridge, solvent extraction and analysis by gas chromatography. Cumulated losses through volatilization reached 30% of the measured application dose after 8 days, with a variability of less than 20% between the three tunnels. Approximately 20% remained in the topsoil (0-2 cm), with a variability of 14% between the three tunnels. The decrease in the volatilization flux over time is coherent with the expected theoretical evolution for a volatile pesticide such as trifluralin and with previous experimental works.
机译:农药挥发到大气中可能是与环境,物理化学和技术因素密切相关的主要消散途径。了解挥发过程需要能够控制其中一些因素的系统。风洞符合这些标准。利用隧道入口和出口之间的空气中农药浓度差和气流速率,通过质量平衡确定挥发通量。 2000年6月进行了一项实验,研究了该技术的可重复性。在三个风洞中测量了三氟乐灵的挥发度,为期8天,采样时间为3小时至2天。农药浓度通过XAD-2树脂捕集在两步色谱柱中,溶剂萃取和气相色谱分析来确定。 8天后,通过挥发引起的累积损失达到了所测施药剂量的30%,三个通道之间的变异性小于20%。表土(0-2厘米)中剩余约20%,三个隧道之间的差异为14%。挥发通量随时间的下降与挥发性农药(如氟乐灵)的预期理论演变以及先前的实验工作一致。

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