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Volatilisation and competing processes computed for a pesticide applied to plants in a wind tunnel system

机译:计算出风洞系统中用于植物的农药的挥发和竞争过程

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BACKGROUND: Volatilisation of pesticides from crop canopies can be an important emission pathway. In addition to pesticide properties, competing processes in the canopy and environmental conditions play a part. A computation model is being developed to simulate the processes, but only some of the input data can be obtained directly from the literature. RESULTS: Three well-defined experiments on the volatilisation of radiolabelled parathion-methyl (as example compound) from plants in a wind tunnel system were simulated with the computation model. Missing parameter values were estimated by calibration against the experimental results. The resulting thickness of the air boundary layer, rate of plant penetation and rate of phototransformation were compared with a diversity of literature data. The sequence of importance of the canopy processes was: volatilisation > plant penetration > phototransformation. CONCLUSION: Computer simulation of wind tunnel experiments, with radiolabelled pesticide sprayed on plants, yields values for the rate coefficients of processes at the plant surface. As some input data for simulations are not required in the framework of registration procedures, attempts to estimate missing parameter values on the basis of divergent experimental results have to be continued.
机译:背景:作物冠层农药的挥发可能是重要的排放途径。除了农药特性外,在冠层和环境条件下的竞争过程也起着一定作用。正在开发一种计算模型来模拟过程,但是只能直接从文献中获得一些输入数据。结果:利用计算模型模拟了三个定义明确的实验,该实验研究了风洞系统中植物放射性标记的对硫磷(作为示例化合物)的挥发度。通过针对实验结果进行校准来估计缺失的参数值。将空气边界层的厚度,植物的渗透率和光转化率与多种文献数据进行了比较。冠层过程的重要顺序是:挥发>植物穿透>光转化。结论:将放射性标记农药喷洒在植物上的风洞实验的计算机模拟可得出植物表面过程速率系数的值。由于在注册程序的框架中不需要用于模拟的某些输入数据,因此必须继续尝试根据不同的实验结果来估计缺少的参数值。

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