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使用非腐蚀性电极从地下水中电化学去除和回收铁。

Electrochemical removal and recovery of iron from groundwater using non-corrosive electrodes.

机构信息

Department of Environmental Engineering, Dong-A University, Busan 49315, Republic of Korea.

Department of Environmental Engineering, Dong-A University, Busan 49315, Republic of Korea.

出版信息

J Environ Manage. 2018 Apr 1;211:36-41. doi: 10.1016/j.jenvman.2018.01.046. Epub 2018 Feb 8.

Abstract

Iron contamination in groundwater has attracted much attention from environmentalists and government agencies because it can cause many problems in human life and in industrial and agricultural activities when groundwater is directly used without any treatment. This study aims to investigate the electrochemical oxidation of Fe(II) to Fe(III) and recovery of insoluble Fe(III) using non-corrosive graphite electrode which serves as a controllable, low-cost, low maintenance and virtually unlimited electron acceptor for Fe(II) oxidation. The lab-scale results indicated that Fe(II) removal up to 100% was obtained at an applied voltage higher than 2 V. The Fe(II) removal efficiency was linearly increased with the increase of potential supply in the range of 1-4 V in the salinity 0.5%. The Fe(II) removal rate could no longer be enhanced at the applied potential higher than 8 V in the condition without salinity. The results from SEM-EDS and XRD revealed that Fe was recovered as FeOOH by conventional filtration with a recovery efficiency of 82.7-92.1%. The electrochemical Fe(II) removal might be an alternative for the conventional method of the in situ Fe removal from groundwater. Besides, the recovered FeOOH can be used as a raw material for environmental remediation and pigment industry.

摘要

地下水的铁污染引起了环保主义者和政府机构的高度关注,因为当地下水未经任何处理直接使用时,会给人类生活以及工农业活动带来许多问题。本研究旨在利用非腐蚀性石墨电极电化学氧化 Fe(II)为 Fe(III)并回收不溶性 Fe(III),石墨电极作为一种可控、低成本、低维护和几乎无限的电子受体,可用于氧化 Fe(II)。实验室规模的结果表明,在施加电压高于 2V 时,可获得高达 100%的 Fe(II)去除率。在 0.5%盐度下,在 1-4V 的电位范围内,Fe(II)去除效率随电位供应的增加呈线性增加。在无盐度条件下,施加的电位高于 8V 时,Fe(II)去除速率不再提高。SEM-EDS 和 XRD 的结果表明,Fe 通过常规过滤以 82.7-92.1%的回收率回收为 FeOOH。电化学去除 Fe(II)可能是地下水原位去除 Fe 的传统方法的替代方法。此外,回收的 FeOOH 可用作环境修复和颜料工业的原料。

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