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采用新型电解质室配置对锌污染软黏土进行电动修复

Electrokinetic Remediation of Zn-Polluted Soft Clay Using a Novel Electrolyte Chamber Configuration.

作者信息

Sun Zhaohua, Tan Wanxia, Gong Jian, Wei Guowei

机构信息

School of Transportation and Civil Engineering, Nantong University, Nantong 226019, China.

Key Laboratory of New Technology for Construction of Cities in Mountain Area, Ministry of Education, Chongqing University, Chongqing 400045, China.

出版信息

Toxics. 2023 Mar 12;11(3):263. doi: 10.3390/toxics11030263.

Abstract

This study investigated a novel electrolyte chamber configuration for heavy-metal-contaminated fine-grained soil to reduce the leakage of electrolyte solution and alleviate secondary pollution, finally promoting the electrokinetic remediation (EKR) potential to be scaled up for application. Experiments were conducted on clay spiked with Zn to investigate the feasibility of the novel EKR configuration and the effect of different electrolyte compositions on the electrokinetic remedial efficiency. The results show that the electrolyte chamber situated above the soil surface is promising for the remediation of Zn-contaminated soft clay. Using 0.2 M citric acid as the anolytes and catholytes was an excellent choice for pH control in the soil and the electrolytes. Through this, the removal efficiency in different soil sections was relatively uniform and more than 90% of the initial Zn was removed. The supplementing of electrolytes resulted in the water content in the soil being distributed evenly and finally sustained at approximately 43%. Consequently, this study proved that the novel EKR configuration is suitable for fine-grained soil contaminated with Zn.

摘要

本研究针对重金属污染的细粒土研究了一种新型电解质室配置,以减少电解质溶液的泄漏并减轻二次污染,最终提高电动修复(EKR)扩大应用规模的潜力。对掺锌黏土进行了实验,以研究新型EKR配置的可行性以及不同电解质成分对电动修复效率的影响。结果表明,位于土壤表面上方的电解质室对于修复锌污染的软黏土很有前景。使用0.2 M柠檬酸作为阳极电解液和阴极电解液是控制土壤和电解液pH值的绝佳选择。通过这种方式,不同土壤区域的去除效率相对均匀,初始锌的去除率超过90%。补充电解质使土壤中的含水量均匀分布,最终稳定在约43%。因此,本研究证明新型EKR配置适用于锌污染的细粒土。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6dd8/10051708/5de51fe892e6/toxics-11-00263-g001a.jpg

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