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Improving Pesticide Uptake Modeling into Potatoes: Considering Tuber Growth Dynamics

机译:考虑块茎增长动力学,改善农药摄取模型

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To explore pesticide uptake from soil into a growing potato, a moving-boundary dynamic model is proposed on the basis of the radical diffusion process of a chemical to a sphere. This model, which considers the logistic growth of the potato tuber, describes two hypothetical processes of chemical diffusion within a growing tuber. The model was tested in an illustrative case study for an application of chlorpyrifos. Results indicate that the distribution of chlorpyrifos concentrations along the potato radius is significantly affected by the tuber development. In comparison of our results to results from a classic model using a fixed boundary, the proposed dynamic model yields a quick and big jump for both the average concentration and bioconcentration factor (BCF) of chlorpyrifos in the potato as a result of the sigmoid expansion boundary. Overall, the dynamic model predicts that chlorpyrifos BCFs in the potato at harvest are higher than those using the classical model. In comparison of model results to measured uptake of chlorpyrifos into potato at harvest, the dynamic model shows better performance than the classical model. Our results provide a new perspective on pesticide uptake into potatoes and inform human health risk assessment for pesticides applied at different tuber growth stages.
机译:为了研究马铃薯对土壤中农药的吸收,基于化学物质向球体的自由基扩散过程,提出了一个移动边界动力学模型。该模型考虑了马铃薯块茎的逻辑生长,描述了生长中块茎内化学扩散的两个假设过程。该模型在毒死蜱应用的说明性案例研究中进行了测试。结果表明,毒死蜱浓度沿马铃薯半径的分布受块茎发育的显著影响。将我们的结果与使用固定边界的经典模型的结果进行比较,提出的动态模型产生了乙状结肠扩张边界导致的毒死蜱在马铃薯中的平均浓度和生物浓缩因子(BCF)的快速而大的跳跃。总体而言,动态模型预测收获时马铃薯中的毒死蜱BCF高于使用经典模型的毒死蜱BCF。将模型结果与收获时马铃薯对毒死蜱吸收的测量结果进行比较,动态模型显示出比经典模型更好的性能。我们的研究结果为马铃薯对农药的吸收提供了新的视角,并为不同块茎生长阶段施用农药的人类健康风险评估提供了依据。

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