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基于六价铬形态的联合化学浸出和还原技术修复六价铬污染土壤。

Remediation of Cr(VI)-contaminated soil using combined chemical leaching and reduction techniques based on hexavalent chromium speciation.

机构信息

China Merchants Ecological Environmental Protection Technology Co., LTD, Chongqing 400067, China.

China Merchants Ecological Environmental Protection Technology Co., LTD, Chongqing 400067, China.

出版信息

Ecotoxicol Environ Saf. 2021 Jan 15;208:111734. doi: 10.1016/j.ecoenv.2020.111734. Epub 2020 Dec 10.

Abstract

Hexavalent chromium [Cr(VI)] has strong mobility and it can enter into deep regions of soil. Cr(VI)-contaminated soil remediation is the process of removing Cr(VI) present in deep soils and any residual Cr(VI). In this study, the Cr(VI)-contaminated soil in Chongqing was investigated, and the remediation and economic feasibility of chemical leaching and reduction combined with a soil repairing approach was explored. The results showed that the leaching reagent, liquid-solid ratio, leaching time, reduction agent dosage, reduction temperature and reduction time had significant (P < 0.05) effects on the remediation of Cr(VI). At 0.02 mol/L oxalic acid and citric acid using a liquid-solid ratio of 5:1 and leaching time of 45 min, the removal rate of Cr(VI) was 62.7%, the residual Cr(VI) in soil was 126 mg/kg, and the soil pH was 4.09 after leaching. Between 25 and 90 °C, and at a molar ratio of 25:1 of FeSO•7 HO to Cr(VI), the reduction rate of Cr(VI) in soil after reduction was 54.0-98.4%, and the leaching concentration of Cr(VI) in soil was 0.01-0.29 mg/L. The optimal reduction was at 90 °C for 60 min, resulting in only 2.7 mg/kg of residual Cr(VI) in soil. The cost of this technology to treat the area studied was 826 ¥/ton of soil, which represents an economically feasible method for Cr(VI)-contaminated soil remediation.

摘要

六价铬[Cr(VI)]具有很强的移动性,可以进入土壤的深层区域。受六价铬污染土壤的修复是指去除深层土壤中存在的六价铬和任何残留的六价铬。本研究调查了重庆地区的受六价铬污染土壤,探索了化学浸出和还原结合土壤修复方法的修复和经济可行性。结果表明,浸出试剂、液固比、浸出时间、还原剂用量、还原温度和还原时间对六价铬的修复有显著影响(P < 0.05)。在 0.02mol/L 草酸和柠檬酸、液固比为 5:1 和浸出时间为 45min 的条件下,六价铬的去除率为 62.7%,土壤中残留的六价铬为 126mg/kg,浸出后土壤的 pH 值为 4.09。在 25 至 90°C 之间,在 FeSO•7H₂O 与 Cr(VI)摩尔比为 25:1 的条件下,土壤还原后六价铬的还原率为 54.0-98.4%,土壤中六价铬的浸出浓度为 0.01-0.29mg/L。最佳还原条件为 90°C 还原 60min,土壤中仅残留 2.7mg/kg 六价铬。该技术处理研究区域的成本为 826 元/吨土壤,代表了一种经济可行的受六价铬污染土壤修复方法。

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