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Fringe-controlled natural attenuation of phenoxy acids in a landfill plume: Integration of field-scale processes by reactive transport modeling

机译:边缘控制的垃圾填埋场羽中苯氧酸的自然衰减:通过反应迁移模型整合现场规模的过程

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摘要

Data obtained from a field study of an aquifer contaminated by landfill leachate and related laboratory experiments suggest that natural attenuation of phenoxy acid herbicides such as mecoprop ( MCPP) occurs in the transition zone between the anaerobic plume core and the overlying aerobic water body. The location of this transition zone is assumed to be primarily controlled by vertical transverse dispersion processes occurring downstream of the pollution source. A reactive transport modeling study was carried out to evaluate this conceptual model. The transport was simulated for a two-dimensional vertical cross section to quantify the combined physical, geochemical, and microbial processes that affect the fate of the phenoxy acid herbicides. The simulations, showing removal of phenoxy acids, an increase of phenoxy acid degraders in the fringe zone, and a dependency of the results on vertical transverse dispersivity, are compatible with the hypothesis of fringe-controlled aerobic biodegradation of the phenoxy acids.
机译:从垃圾填埋场渗滤液污染的含水层的现场研究和相关实验室实验获得的数据表明,苯氧酸除草剂(如甲丙酸(MCPP))的自然衰减发生在厌氧烟羽芯和上层好氧水体之间的过渡带。假定该过渡区的位置主要由发生在污染源下游的垂直横向扩散过程控制。进行了反应性运输模型研究以评估该概念模型。针对二维垂直横截面模拟运输过程,以量化影响苯氧酸除草剂命运的综合物理,地球化学和微生物过程。该模拟显示出苯氧酸的去除,边缘区域苯氧酸降解物的增加以及结果对垂直横向分散度的依赖性,这些模拟与苯氧酸的边缘控制的需氧生物降解的假设相符。

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