Direct/Alternating Current Electrochemical Method for Removing and Recovering Heavy Metal from Water Using Graphene Oxide Electrode

石墨烯 氧化物 材料科学 吸附 废水 电化学 金属 水溶液中的金属离子 电极 工业废水处理 污染 水处理 环境污染 无机化学 环境工程 冶金 纳米技术 环境科学 化学 有机化学 环境保护 物理化学 生物 生态学
作者
Chong Liu,Tong Wu,Po‐Chun Hsu,Jin Xie,Jie Zhao,Kai Liu,Jie Sun,Jinwei Xu,Jing Tang,Ziwen Ye,Dingchang Lin,Yi Cui
出处
期刊:ACS Nano [American Chemical Society]
卷期号:13 (6): 6431-6437 被引量:279
标识
DOI:10.1021/acsnano.8b09301
摘要

Treatment of heavy-metal pollution in both point-of-use water and industrial wastewater is critical in protecting human health and the environment. Current methods for heavy-metal treatment in both sources have limitations. For point-of-use water, current methods usually suffer from limited capacity and difficulties in spontaneously removing multiple heavy metals. For industrial wastewater, current methods greatly reduce the value of heavy metal by precipitating them as sludge which requires further treatment. Here we developed an electrochemical method that can treat both low-concentration and high-concentration heavy-metal pollution using either direct current (DC) or alternating current (AC) electrodeposition with graphene-oxide-modified carbon felt electrode (CF-GO). The graphene oxide provides a high density of surface functional groups to assist the electrodeposition. The electrodeposition method showed 2 orders of magnitude higher capacity (>29 g heavy metal for 1 g of graphene oxide) compared with traditional adsorption methods. For low levels of heavy-metal pollution in point-of-use water, DC electrodeposition with a CF-GO electrode can reduce single heavy-metal ion pollution (Cu, Cd, and Pb) as well as multiple ion mixtures to below safe water drinking levels. This method can tolerate a much wider range of heavy-metal pollution in point-of-use water than traditional adsorption methods. For high-level pollution in industrial wastewater, AC electrodeposition can recover >99.9% heavy-metal ions. By tuning the AC frequency and voltage, the electrodeposition method can further selectively recover Cu, Cd, and Pb separately, which adds values to the heavy-metal removal process.
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