膜
金属
电化学
废水
乙二胺四乙酸
材料科学
拉曼光谱
无机化学
金属有机骨架
化学
电催化剂
电子转移
化学工程
析氧
水处理
微生物燃料电池
饮用水净化
组合化学
氧气
催化作用
激进的
活性氧
羟基自由基
降级(电信)
路易斯酸
工业废水处理
作者
Jincheng Zhang,Hengqi Shi,Yuancheng Jiang,Zheng Fang,Longzhe Li,Zhonglong Yin,Weiben Yang
标识
DOI:10.1002/adfm.202524704
摘要
Abstract Complex heavy metals in industrial wastewater threaten global water safety, while their sustainable treatment and direct utilization from complex water matrices are still challenging. Herein, a decomplexation‐electroreduction‐targeted conversion coupling electrochemical strategy is developed to recover the complexed heavy metal and then in situ convert into a metal–organic frameworks (MOFs) electrocatalytic membrane (ECM) for enhanced antibiotics degradation. Ethylenediaminetetraacetic acid‐metal (Cu, Pb, Zn) is efficiently decomplexed (92‐97%) with high metal recovery (87‐99%), and metal‐trimesic acid (BTC) MOFs are well grown on the substrate. The multi‐metal active sites in CuPbZn‐BTC endowed ECM with abundant oxygen vacancy, Lewis acid sites, fast electron transfer and suppressed oxygen evolution reaction, which presented much superior antibiotics removal (92‐99%) than monometallic MOFs ECM; moreover, radical (•OH, •O 2 − and SO 4 •− ) and non‐radical ( 1 O 2 ) pathways are precisely adjusted by modulating metal ratios under electricity without the addition of chemicals (H 2 O 2 or persulfate) and the mechanism is due to the activation of reactive oxygen species (ROS) precursors (O 2 , H 2 O and SO 4 2− ) as revealed by in situ Raman spectra and ROS identification. The potential application is demonstrated by the recovery of heavy metals from simulated electroplating wastewater into mixed‐metal MOFs ECM that presented efficient and stable antibiotics degradation for surface water remediation.
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