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电动修复技术去除土壤中的无机污染物:综述。

Removal of inorganic contaminants in soil by electrokinetic remediation technologies: A review.

机构信息

Centre for Environmental Risk Management & Remediation of Soil & Groundwater, College of Environmental Science and Engineering, Tongji University, Shanghai, 200092, China.

Centre for Environmental Risk Management & Remediation of Soil & Groundwater, College of Environmental Science and Engineering, Tongji University, Shanghai, 200092, China.

出版信息

J Hazard Mater. 2021 Jan 5;401:123345. doi: 10.1016/j.jhazmat.2020.123345. Epub 2020 Jul 4.

Abstract

The soil contaminated by inorganic contaminants including heavy metals, radioactive elements and salts has been posing risks for human health and ecological environment, which has been widely paid attention in recent years. The electrokinetic remediation (EKR) technology is recognized as the most potential separation technology, which is commonly used to clean sites that are contaminated with organic and inorganic contaminants. It is the most suitable remediation technology for low permeability porous matrices. The main transport mechanism of pollutants in EKR include electromigration, electroosmosis and electrophoresis, coupled with electrolysis and geochemical reactions. Although arduous endeavors have been carried out to build optimal operating conditions and reveal the mechanism of EKR process, a systematic theoretical foundation hasn't been sorted yet. A comprehensive review on electrokinetic remediation of inorganic contaminants in soil is given in this study, and a more systematic theoretical foundation is sorted out according to the latest theoretical achievements. This theoretical system mainly focuses on the scientific and practical aspects of the application of EKR technology in soil remediation, by which we try to dig into the core of this technology. It contains key motive power of electric phenomena, side effects, energy consumption and supply, and removal of heavy metals, radioactive elements and salts in soil during EKR. In addition, correlations between dehydration, crystallization effect, focusing effect and thermal effect are disclosed; optimal operating conditions for the removal of heavy metals by EKR and EKR coupled with PRB are discussed and sorted out. Also discussed herein is the relationship between energy allocation and energy saving. According to the related findings, some potential improvements are also proposed.

摘要

受重金属、放射性元素和盐分等无机污染物污染的土壤,一直以来都对人类健康和生态环境构成威胁,近年来受到了广泛关注。电动修复(EKR)技术被认为是最有潜力的分离技术,常用于清洁有机和无机污染物污染的场地。它是最适合低渗透多孔基质的修复技术。EKR 中污染物的主要迁移机制包括电迁移、电渗流和电泳,以及电解和地球化学反应。尽管人们已经付出了艰苦的努力来建立最佳的操作条件并揭示 EKR 过程的机制,但尚未形成系统的理论基础。本研究对土壤中无机污染物的电动修复进行了全面综述,并根据最新的理论成果对 EKR 过程进行了更系统的理论基础整理。该理论体系主要侧重于 EKR 技术在土壤修复中的应用的科学和实践方面,试图深入研究该技术的核心。它包含 EKR 技术中电现象的关键动力、副作用、能量消耗和供应以及去除土壤中的重金属、放射性元素和盐分。此外,还揭示了脱水、结晶效应、聚焦效应和热效应之间的相关性;讨论并整理了 EKR 去除重金属和 EKR 与 PRB 耦合去除重金属的最佳操作条件。还讨论了能量分配与节能之间的关系。根据相关研究结果,还提出了一些潜在的改进措施。

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