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用于从重金属和有机物中修复土壤的混合增强电动系统。

Hybrid and enhanced electrokinetic system for soil remediation from heavy metals and organic matter.

作者信息

Hamdi Faris M, Ganbat Namuun, Altaee Ali, Samal Akshaya K, Ibrar Ibrar, Zhou John L, Sharif Adel O

机构信息

Centre for Green Technology, School of Civil and Environmental Engineering, The University of Technology Sydney, 15 Broadway, NSW 2007, Australia; Department of Civil Engineering, Jazan University, Jazan 82822, Saudi Arabia.

Centre for Green Technology, School of Civil and Environmental Engineering, The University of Technology Sydney, 15 Broadway, NSW 2007, Australia.

出版信息

J Environ Sci (China). 2025 Jan;147:424-450. doi: 10.1016/j.jes.2023.11.005. Epub 2023 Nov 22.

Abstract

The electrokinetic (EK) process has been proposed for soil decontamination from heavy metals and organic matter. The advantages of the EK process include the low operating energy, suitability for fine-grained soil decontamination, and no need for excavation. During the last three decades, enhanced and hybrid EK systems were developed and tested for improving the efficiency of contaminants removal from soils. Chemically enhanced-EK processes exhibited excellent efficiency in removing contaminants by controlling the soil pH or the chemical reaction of contaminants. EK hybrid systems were tested to overcome environmental hurdles or technical drawbacks of decontamination technologies. Hybridization of the EK process with phytoremediation, bioremediation, or reactive filter media (RFM) improved the remediation process performance by capturing contaminants or facilitating biological agents' movement in the soil. Also, EK process coupling with solar energy was proposed to treat off-grid contaminated soils or reduce the EK energy requirements. This study reviews recent advancements in the enhancement and hybrid EK systems for soil remediation and the type of contaminants targeted by the process. The study also covered the impact of operating parameters, imperfect pollution separation, and differences in the physicochemical characteristics and microstructure of soil/sediment on the EK performance. Finally, a comparison between various remediation processes was presented to highlight the pros and cons of these technologies.

摘要

电动(EK)工艺已被用于土壤中重金属和有机物的去污。EK工艺的优点包括运行能量低、适用于细粒土壤去污且无需挖掘。在过去三十年中,为提高从土壤中去除污染物的效率,开发并测试了强化和混合EK系统。化学强化电动工艺通过控制土壤pH值或污染物的化学反应,在去除污染物方面表现出卓越的效率。对EK混合系统进行了测试,以克服去污技术的环境障碍或技术缺陷。将EK工艺与植物修复、生物修复或反应性过滤介质(RFM)相结合,通过捕获污染物或促进生物制剂在土壤中的移动,提高了修复过程的性能。此外,还提出了将EK工艺与太阳能相结合,以处理离网污染土壤或降低EK的能量需求。本研究综述了强化和混合EK系统在土壤修复方面的最新进展以及该工艺针对的污染物类型。该研究还涵盖了操作参数、不完全污染分离以及土壤/沉积物的物理化学特性和微观结构差异对EK性能的影响。最后,对各种修复工艺进行了比较,以突出这些技术的优缺点。

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