可渗透反应墙
环境修复
地下水修复
地下水
环境科学
材料科学
环境工程
工程类
污染
岩土工程
生态学
生物
作者
Yunhui Zhang,Benyi Cao,Hailong Yin,Lite Meng,Wanqin Jin,Fei Wang,Jing Xu,Abir Al‐Tabbaa
出处
期刊:Chemosphere
[Elsevier]
日期:2022-12-01
卷期号:308: 136290-136290
被引量:13
标识
DOI:10.1016/j.chemosphere.2022.136290
摘要
Permeable reactive barrier (PRB) is one of the most promising in-situ groundwater remediation technologies due to its low costs and wide immobilization suitability for multiple contaminants. Reactive medium is a key component of PRBs and their selection needs to consider removal effectiveness as well as permeability. Zeolites have been extensively reported as reactive media owing to their high adsorption capacity, diverse pore structure and high stability. Moreover, the application of zeolites can reduce the PRBs fouling and clogging compared to reductants like zero-valence iron (ZVI) due to no formation of secondary precipitates, such as iron monosulfide, in spite of their reactivity to remove organics. This study gives a detailed review of lab-scale applications of zeolites in PRBs in terms of sorption characteristics, mechanisms, column performance and desorption features, as well as their field-scale applications to point out their application tendency in PRBs for contaminated groundwater remediation. On this basis, future prospects and suggestions for using zeolites in PRBs for groundwater remediation were put forward. This study provides a comprehensive and critical review of the lab-scale and field-scale applications of zeolites in PRBs and is expected to guide the future design and applications of adsorbents-based PRBs for groundwater remediation.
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