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环境电动力学:实现地下环境可持续发展

Environmental Electrokinetics for a sustainable subsurface.

机构信息

Ecohydrology Research Group, Department of Earth and Environmental Sciences and Water Institute, University of Waterloo, Waterloo, Canada; Department of Environmental Engineering, Universidade Federal do Espírito Santo, Vitória, ES, Brazil.

University of Lille, CNRS, UMR 8187, LOG, Laboratoire d'Océanologie et de Géosciences, 59655 Villeneuve d'Ascq, France.

出版信息

Chemosphere. 2017 Aug;181:122-133. doi: 10.1016/j.chemosphere.2017.03.143. Epub 2017 Apr 11.

DOI:10.1016/j.chemosphere.2017.03.143
PMID:28433930
Abstract

Soil and groundwater are key components in the sustainable management of the subsurface environment. Source contamination is one of its main threats and is commonly addressed using established remediation techniques such as in-situ chemical oxidation (ISCO), in-situ chemical reduction (ISCR; most notably using zero-valent iron [ZVI]), enhanced in-situ bioremediation (EISB), phytoremediation, soil-washing, pump-and-treat, soil vapour extraction (SVE), thermal treatment, and excavation and disposal. Decades of field applications have shown that these techniques can successfully treat or control contaminants in higher permeability subsurface materials such as sands, but achieve only limited success at sites where low permeability soils, such as silts and clays, prevail. Electrokinetics (EK), a soil remediation technique mostly recognized in in-situ treatment of low permeability soils, has, for the last decade, been combined with more conventional techniques and can significantly enhance the performance of several of these remediation technologies, including ISCO, ISCR, EISB and phytoremediation. Herein, we discuss the use of emerging EK techniques in tandem with conventional remediation techniques, to achieve improved remediation performance. Furthermore, we highlight new EK applications that may come to play a role in the sustainable treatment of the contaminated subsurface.

摘要

土壤和地下水是地下环境可持续管理的关键组成部分。污染源是其主要威胁之一,通常采用原位化学氧化(ISCO)、原位化学还原(ISCR;特别是使用零价铁[ZVI])、增强原位生物修复(EISB)、植物修复、土壤洗涤、抽吸处理、土壤蒸气提取(SVE)、热处理以及挖掘和处置等成熟的修复技术来解决。数十年的现场应用表明,这些技术可以成功处理或控制高渗透性地下材料(如砂)中的污染物,但在低渗透性土壤(如淤泥和粘土)为主的场地中,仅取得有限的成功。电动力学(EK)是一种主要在原位处理低渗透性土壤中得到认可的土壤修复技术,在过去十年中,已与更传统的技术相结合,可以显著提高几种修复技术的性能,包括 ISCO、ISCR、EISB 和植物修复。在此,我们讨论了新兴的 EK 技术与传统修复技术相结合,以实现更好的修复效果。此外,我们还强调了新的 EK 应用,这些应用可能会在污染地下环境的可持续处理中发挥作用。

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