电解
废水
激进的
催化作用
化学
可再生能源
污水处理
过滤(数学)
环境科学
材料科学
废物管理
环境工程
电解质
有机化学
工程类
物理化学
电气工程
统计
数学
电极
作者
Jinwei Xu,Xueli Zheng,Zhiping Feng,Zhiyi Lu,Zewen Zhang,William Huang,Yanbin Li,Djordje Vuckovic,Yuanqing Li,Sheng Dai,Guangxu Chen,Kecheng Wang,Hansen Wang,James Chen,William A. Mitch,Yi Cui
标识
DOI:10.1038/s41893-020-00635-w
摘要
The presence of organic contaminants in wastewater poses considerable risks to the health of both humans and ecosystems. Although advanced oxidation processes that rely on highly reactive radicals to destroy organic contaminants are appealing treatment options, substantial energy and chemical inputs limit their practical applications. Here we demonstrate that Cu single atoms incorporated in graphitic carbon nitride can catalytically activate H2O2 to generate hydroxyl radicals at pH 7.0 without energy input, and show robust stability within a filtration device. We further design an electrolysis reactor for the on-site generation of H2O2 from air, water and renewable energy. Coupling the single-atom catalytic filter and the H2O2 electrolytic generator in tandem delivers a wastewater treatment system. These findings provide a promising path toward reducing the energy and chemical demands of advanced oxidation processes, as well as enabling their implementation in remote areas and isolated communities.
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