过氧二硫酸盐
降级(电信)
水溶液
污染物
化学
零价铁
激进的
氧气
分解
光化学
化学工程
材料科学
无机化学
有机化学
计算机科学
电信
吸附
工程类
作者
Yuhang Li,Chong‐Chen Wang,Fei Wang,Wen Liu,Long Chen,Chen Zhao,Huifen Fu,Peng Wang,Xiaoguang Duan
标识
DOI:10.1016/j.apcatb.2023.122699
摘要
The porous defective MIL-88B(Fe) with abundant oxygen vacancies and Fe-N sites was fabricated to accomplish nearly zero peroxydisulfate (PDS) consumption for persistent bisphenol A (BPA) degradation via electron-transfer pathway (ETP). Interestingly, the generated sulfates during ETP were oxidized to yield the confined sulfate radicals and to accomplish the peroxydisulfate regeneration in the fine-tuned MIL-88B(Fe), which was verified by series experiments and DFT calculations. Further studies suggested that the optimal De-MIL-88B(Fe)-1.25 catalyst achieved the persistent nonradical reactions for BPA decomposition under visible light irradiation with both low input and low consumption of PDS. It was the first case to achieve nearly zero PDS consumption for emerging pollutants elimination, which provided new strategy to design and tune defective metal-organic frameworks for the purpose of reducing the stoichiometry between PDS and contaminants for nearly zero PDS consumption.
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