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Environmental science & technology. 2022 Aug 2;56(15):10945-10953. doi: 10.1021/acs.est.2c02363 Q110.92024

An Electrochemical Strategy for Simultaneous Heavy Metal Complexes Wastewater Treatment and Resource Recovery

一种电化学同时处理重金属废水和回收资源的策略 翻译改进

Meiqi Li  1, Na Chen  1, Huan Shang  1, Cancan Ling  1, Kai Wei  1, Shengxi Zhao  1, Biao Zhou  1, Falong Jia  1, Zhihui Ai  1, Lizhi Zhang  1  2

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作者单位

  • 1 Key Laboratory of Pesticide & Chemical Biology of Ministry of Education, Institute of Environmental & Applied Chemistry, College of Chemistry, Central China Normal University, Wuhan 430079, P. R. China.
  • 2 School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai 200240, P. R. China.
  • DOI: 10.1021/acs.est.2c02363 PMID: 35830297

    摘要 Ai翻译

    Heavy metals chelated with coexisting organic ligands in wastewater impose severe risks to public health and the ambient ecosystem but are also valuable metal resources. For sustainable development goals, the treatment of heavy metal complexes wastewater requires simultaneous metal-organic bond destruction and metal resource recovery. In this study, we demonstrated that a neutral pH electro-Fenton (EF) system, which was composed of an iron anode, carbon cloth cathode, and sodium tetrapolyphosphate electrolyte (Na6TPP), could induce a successive single-electron activation pathway of molecular oxygen due to the formation of Fe(II)-TPP complexes. The boosted •OH generation in the Na6TPP-EF process could decomplex 99.9% of copper ethylene diamine tetraacetate within 8 h; meanwhile, the released Cu ions were in situ deposited on the carbon cloth cathode in the form of Cu nanoparticles with a high energy efficiency of 2.45 g kWh-1. Impressively, the recovered Cu nanoparticles were of purity over 95.0%. More importantly, this neutral EF strategy could realize the simultaneous removal of Cu, Ni, and Cr complexes from real electroplating effluents. This study provides a promising neutral EF system for simultaneous heavy metal complexes wastewater treatment and resource recovery and sheds light on the importance of molecular oxygen activation in the field of pollutant control.

    Keywords: Cu recovery; decomplexation; electro-Fenton; heavy metal−organic complexes; sodium tetrapolyphosphate electrolyte.

    Keywords:electrochemical strategy; heavy metal complexes; wastewater treatment; resource recovery

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    期刊名:Environmental science & technology

    缩写:ENVIRON SCI TECHNOL

    ISSN:0013-936X

    e-ISSN:1520-5851

    IF/分区:10.9/Q1

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    An Electrochemical Strategy for Simultaneous Heavy Metal Complexes Wastewater Treatment and Resource Recovery