降级(电信)
激进的
催化作用
氧化还原
硝基
污染物
戒指(化学)
可扩展性
X射线光电子能谱
光化学
化学
材料科学
组合化学
化学工程
计算机科学
有机化学
数据库
电信
工程类
烷基
作者
Yueshuang Mao,Bingnan Yu,Pengfei Wang,Shuai Yue,Sihui Zhan
标识
DOI:10.1038/s41467-024-50238-8
摘要
Abstract Nitroaromatic compounds (NACs) with electron-withdrawing nitro (-NO 2 ) groups are typical refractory pollutants. Despite advanced oxidation processes (AOPs) being appealing degradation technologies, inefficient ring-opening oxidation of NACs and practical large-scale applications remain challenges. Here we tackle these challenges by designing a reduction-oxidation coupling (ROC) degradation process in LaFe 0.95 Cu 0.05 O 3 @carbon fiber cloth (LFCO@CFC)/PMS/Vis continuous flow system. Cu doping enhances the photoelectron transfer, thus triggering the -NO 2 photoreduction and breaking the barriers in the ring opening. Also, it modulates surface electronic configuration to generate radicals and non-radicals for subsequent oxidation of reduction products. Based on this, the ROC process can effectively remove and mineralize NACs under the environmental background. More importantly, the LFCO catalyst outperformed most of the recently reported catalysts with lower cost (13.72 CNY/ton) and higher processing capacity (3600 t/month). Furthermore, the high scalability, material durability, and catalytic activity of LFCO@CFC under various realistic environmental conditions prove the potential ability for large-scale applications.
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