Leaching risk assessment of pesticides from soil as function of soil properties, pesticide properties and rainfall characteristics using HYDRUS 1D numerical model

J. Ona
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Abstract

It has been observed through experiments that many chemicals especially pesticides found in streams and groundwater bodies are transported through surface runoff and/or preferential flow processes. Researchers have also proved that the timing and nature of rainfall since the last pesticide application are often described as significant controls on pesticide transport through flow processes. Rainfall variability is now considered as the climate drivers on contaminant transport. The amount of pesticides transported through surface runoff and/or preferential flow pathways to streams and groundwater respectively has been shown to be strongly correlated with the concentration of that chemical in a thin near-surface layer of the soil immediately prior to such an event. The thin near-surface layer of a soil is regarded as the source where all the dynamics of solute transport starts. The thin near-surface layer is the store of pesticide from which they are leached by both fast episodic as well as slow steady processes. In this research, we seek to better understand the idea of driver-source-trigger concept of pesticide solute transport in the subsurface. The driver (rainfall variability) triggers (surface runoff and/or preferential flow) from the source (a thin near-surface layer) for pesticides transport to stream and/or groundwater. The methodology for this study is by the use of HYDRUS 1D Numerical Model.
基于HYDRUS 1D数值模型的土壤、农药特性和降雨特征对土壤农药淋滤风险的影响
通过实验观察到,在溪流和地下水体中发现的许多化学物质,特别是农药,是通过地表径流和/或优先流动过程输送的。研究人员还证明,自上次施用农药以来,降雨的时间和性质通常被描述为农药通过流动过程运输的重要控制因素。降雨变率现在被认为是污染物运输的气候驱动因素。经地表径流和/或优先流向溪流和地下水的农药量已被证明与这种化学物质在这种事件发生之前在土壤近表层薄层中的浓度密切相关。土壤的近地表薄层被认为是溶质迁移动力学的起点。薄薄的近表层是农药的储存库,它们通过快速的偶然过程和缓慢的稳定过程被浸出。在本研究中,我们试图更好地理解农药溶质在地下运输的驱动-源-触发概念。驱动因素(降雨变异性)触发(地表径流和/或优先流)从源头(稀薄的近地表层)将农药输送到河流和/或地下水。本研究的方法是使用HYDRUS 1D数值模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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