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首页> 外文期刊>Journal of Contaminant Hydrology >Transport of bromide and pesticides through an undisturbed soil column: A modeling study with global optimization analysis
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Transport of bromide and pesticides through an undisturbed soil column: A modeling study with global optimization analysis

机译:溴化物和农药通过未扰动土壤柱的运输:具有全局优化分析的模型研究

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The fate of pesticides in tropical soils is still not understood as well as it is for soils in temperate regions. In this study, water flow and transport of bromide tracer and five pesticides (atrazine, imazaquin, sulfometuron methyl, S-metolachlor, and imidacloprid) through an undisturbed soil column of tropical Oxisol were analyzed using a one-dimensional numerical model. The numerical model is based on Richards' equation for solving water flow, and the advection-dispersion equation for solving solute transport Data from a laboratory column leaching experiment were used in the uncertainty analysis using a global optimization methodology to evaluate the model's sensitivity to transport parameters. All pesticides were found to be relatively mobile (sorption distribution coefficients lower than 2 cm(3) g(-1)). Experimental data indicated significant non-conservative behavior of bromide tracer. All pesticides, with the exception of imidacloprid, were found less persistent (degradation half-lives smaller than 45 days). Three of the five pesticides (atrazine, sulfometuron methyl, and S-metolachlor) were better described by the linear kinetic sorption model, while the breakthrough curves of imazaquin and imidacloprid were more appropriately approximated using nonlinear instantaneous sorption. Sensitivity analysis suggested that the model is most sensitive to sorption distribution coefficient The prediction limits contained most of the measured points of the experimental breakthrough curves, indicating adequate model concept and model structure for the description of transport processes in the soil column under study. Uncertainty analysis using a physically-based Monte Carlo modeling of pesticide fate and transport provides useful information for the evaluation of chemical leaching in Hawaii soils. (C) 2015 Elsevier B.V. All rights reserved.
机译:对于热带土壤中农药的命运以及温带地区土壤中的农药命运仍然尚未了解。在这项研究中,使用一维数值模型分析了溴化物示踪剂和五种农药(阿特拉津,吡虫啉,甲基磺草胺,S-甲草胺和吡虫啉)的水流和传输,这些水通过一维纯净的土壤Oxisol土柱。数值模型基于Richards方程求解水流,对流扩散方程求解溶质运移实验室柱浸实验的数据用于不确定性分析中,采用全局优化方法评估模型对运移参数的敏感性。发现所有农药都相对移动(吸附分布系数低于2 cm(3)g(-1))。实验数据表明,溴化物示踪剂具有明显的非保守行为。除吡虫啉外,所有农药的持久性均较弱(降解半衰期小于45天)。线性动力学吸附模型可以更好地描述五种农药中的三种(阿特拉津,甲基磺胺甲磺隆和S-异丙甲草胺),而使用非线性瞬时吸附,可以更适当地近似估计吡虫啉和吡虫啉的穿透曲线。敏感性分析表明,该模型对吸附分布系数最敏感。预测极限包含实验突破曲线的大部分测量点,表明有足够的模型概念和模型结构来描述所研究的土壤柱中的运输过程。使用基于物理方法的农药命运和运输方式的蒙特卡洛模型进行的不确定性分析为评估夏威夷土壤中的化学浸出提供了有用的信息。 (C)2015 Elsevier B.V.保留所有权利。

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