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使用异质结Ni-Sb-SnO阳极的电化学臭氧产生系统对Cu-TEPA进行自催化解络合并同时回收铜

Self-catalytic decomplexation of Cu-TEPA and simultaneous recovery of Cu by an electrochemical ozone production system using heterojunction Ni-Sb-SnO anode.

作者信息

Kan Hongshuai, Mao Ran, Zhu Xu, Cui Yuexin, Liu Yi, Wang Kaifeng, Sun Sainan, Zhao Xu

机构信息

Key Laboratory of Drinking Water Science and Technology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China; University of Chinese Academy of Sciences, Beijing 100049, China.

Key Laboratory of Drinking Water Science and Technology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China; University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

J Hazard Mater. 2024 Mar 5;465:132967. doi: 10.1016/j.jhazmat.2023.132967. Epub 2023 Nov 10.

DOI:10.1016/j.jhazmat.2023.132967
PMID:38042004
Abstract

Heavy metal complexes from the industrial wastewater induce risks for the humans and ecosystems, yet are valuable metal resources. For energy saving and emission reduction goals, the simultaneous decomplexation and recovery of metal resources is the ideal disposal of wastewater with heavy metal complexes. Herein, a self-catalytic decomplexation scheme is developed via an electrochemical ozone production (EOP) system to achieve efficient decomplexation and Cu recovery. The EOP system could achieve 94.36% decomplexation of Cu-TEPA, which is a typical complex in catalyst industrial wastewater, and 86.52% recovery of Cu within 60 min at a current density of 10 mA/cm. The O and OH generated at the anode would first attack Cu-TEPA to produce Cu-organic nitrogen intermediates, which further catalyze O to generate OH, thus self-enhancing the decomposition process in the EOP system. The released Cu was gradually reduced to Cu and finally deposited as CuO and Cu to the stainless steel cathode. The technological feasibility was confirmed with other Cu-complexes such as Cu-EDTA and Cu-citrate, and the actual Cu-TEPA-containing industrial wastewater. The results provide new insights regarding the application of EOP in the simultaneous treatment of heavy metal complex wastewater and resource recovery.

摘要

工业废水中的重金属络合物对人类和生态系统构成风险,但却是宝贵的金属资源。为实现节能减排目标,同时进行脱络合和金属资源回收是处理含重金属络合物废水的理想方式。在此,通过电化学臭氧产生(EOP)系统开发了一种自催化脱络合方案,以实现高效脱络合和铜回收。在10 mA/cm的电流密度下,EOP系统可在60分钟内实现催化剂工业废水中典型络合物Cu-TEPA 94.36%的脱络合以及86.52%的铜回收。阳极产生的O和OH会首先攻击Cu-TEPA生成Cu-有机氮中间体,该中间体进一步催化O生成OH,从而在EOP系统中自我增强分解过程。释放出的铜逐渐还原为Cu,最终以CuO和Cu的形式沉积到不锈钢阴极上。该技术对其他铜络合物如Cu-EDTA和Cu-柠檬酸盐以及实际含Cu-TEPA的工业废水也具有可行性。这些结果为EOP在同时处理重金属络合废水和资源回收方面的应用提供了新的见解。

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