首页> 外文会议>Water resource management : Science and technology innovation for sustainable development >REACTIVE TRANSPORT OF ORGANIC CONTAMINANTS IN GROUNDWATER: IMPORTANCE OF MIXING AND FRINGE BIODEGRADATION PROCESSES
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REACTIVE TRANSPORT OF ORGANIC CONTAMINANTS IN GROUNDWATER: IMPORTANCE OF MIXING AND FRINGE BIODEGRADATION PROCESSES

机译:地下水中有机污染物的反应性运输:混合和边缘生物降解过程的重要性

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The release of organic pollutants in groundwater triggers many processes such as redox reactions, sorption, ion exchange and precipitation/dissolution reactions. The most important processes contributing to the contaminants' mass removal and, therefore, determining the fate and transport of the pollutants are microbially mediated degradation reactions. In this study focus is on biodegradation reactions taking place at the fringe of oxidizable organic contaminant plumes. In these zones dissolved contaminants, electron acceptors and nutrients are brought into contact by diffusive/dispersive mixing, thus creating favourable conditions for the degradation activity of the microorganisms. Mixing processes in saturated porous media and mixing-controlled fringe reactions were investigated both at the laboratory bench scale, by performing well-controlled tank experiments with conservative and reactive compounds, and at the typical field scale. The latter investigation was conducted by numerical simulations of contamination scenarios carried out with the main goal of identifying the relevant parameters which have a strong influence on migration and natural attenuation of organic contaminants. The influence of different parameters such as transverse dispersivity, thickness of the contamination source, recharge and mixing enhancement through flow focusing in high permeability zones were assessed.
机译:地下水中有机污染物的释放触发了许多过程,例如氧化还原反应,吸附,离子交换和沉淀/溶解反应。导致污染物大量去除并因此确定污染物的归宿和迁移的最重要过程是微生物介导的降解反应。在这项研究中,重点是在可氧化的有机污染物羽流边缘发生的生物降解反应。在这些区域中,通过扩散/分散混合使溶解的污染物,电子受体和营养物接触,从而为微生物的降解活性创造了有利条件。在实验室工作台规模上,通过对保守和反应性化合物进行良好控制的储罐实验,并在典型的现场规模下,研究了饱和多孔介质中的混合过程和混合控制的边缘反应。后者的研究是通过对污染情景进行数值模拟进行的,其主要目的是确定对有机污染物的迁移和自然衰减有很大影响的相关参数。评估了不同参数的影响,例如横向分散性,污染源的厚度,补给和通过高渗透率区域中的流动聚焦进行的混合增强。

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