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电动强化生物修复有机污染物:过程与环境应用综述。

Electrokinetic-enhanced bioremediation of organic contaminants: a review of processes and environmental applications.

机构信息

Groundwater Protection and Restoration Group, University of Sheffield, Department of Civil & Structural Engineering, Kroto Research Institute, Broad Lane, Sheffield S3 7HQ, UK.

Institute of Environment and Sustainability, Cardiff University, School of Engineering, Queen's Buildings, The Parade, Cardiff CF24 3AA, UK.

出版信息

Chemosphere. 2014 Jul;107:31-42. doi: 10.1016/j.chemosphere.2014.03.019. Epub 2014 Apr 9.

Abstract

There is current interest in finding sustainable remediation technologies for the removal of contaminants from soil and groundwater. This review focuses on the combination of electrokinetics, the use of an electric potential to move organic and inorganic compounds, or charged particles/organisms in the subsurface independent of hydraulic conductivity; and bioremediation, the destruction of organic contaminants or attenuation of inorganic compounds by the activity of microorganisms in situ or ex situ. The objective of the review is to examine the state of knowledge on electrokinetic bioremediation and critically evaluate factors which affect the up-scaling of laboratory and bench-scale research to field-scale application. It discusses the mechanisms of electrokinetic bioremediation in the subsurface environment at different micro and macroscales, the influence of environmental processes on electrokinetic phenomena and the design options available for application to the field scale. The review also presents results from a modelling exercise to illustrate the effectiveness of electrokinetics on the supply electron acceptors to a plume scale scenario where these are limiting. Current research needs include analysis of electrokinetic bioremediation in more representative environmental settings, such as those in physically heterogeneous systems in order to gain a greater understanding of the controlling mechanisms on both electrokinetics and bioremediation in those scenarios.

摘要

目前人们有兴趣寻找可持续的修复技术,以去除土壤和地下水中的污染物。本篇综述重点关注电动力学的结合,即利用电势在水力传导率独立的情况下在地下移动有机和无机化合物,或带电荷的粒子/生物体;以及生物修复,即利用微生物在原位或异位的活性破坏有机污染物或衰减无机化合物。综述的目的是检验电动力学生物修复的现有知识状况,并批判性地评估影响实验室和台架规模研究向现场规模应用扩展的因素。它讨论了在不同微观和宏观尺度下地下环境中电动力学生物修复的机制、环境过程对电动力学现象的影响以及可用于现场应用的设计选择。该综述还介绍了建模工作的结果,以说明在这些受限制的情况下,电动力学对供应电子受体到羽流规模场景的有效性。目前的研究需求包括在更具代表性的环境条件下分析电动力学生物修复,例如在物理异质系统中,以便更好地了解这些情况下电动力学和生物修复的控制机制。

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