过硫酸盐
硝基苯
光催化
激进的
催化作用
过硫酸钠
化学
甲基橙
辐照
光化学
橙色G
高级氧化法
材料科学
化学工程
降级(电信)
核化学
有机化学
核物理学
工程类
物理
电信
计算机科学
作者
Jiajie Xu,Shengye Wang,Changyu Yan,Hafiz Mohammad Adeel Sharif,Bo Yang
出处
期刊:Chemosphere
[Elsevier]
日期:2022-02-01
卷期号:288: 132666-132666
被引量:9
标识
DOI:10.1016/j.chemosphere.2021.132666
摘要
Advanced oxidation processes based on sulfate radicals are considered as a promising approach for environmental remediation. In this study, TiO2@MIL-101(Fe) is successfully fabricated by a facile impregnation method and is used for sodium persulfate (SPS) activation. TiO2@MIL-101@SPS combines the advantages of photocatalysis and SPS activation, which shows high removal efficiency for nitrobenzene and methyl orange. In addition, the effect of multiple factors, including light source, SPS amount and catalyst amount, on nitrobenzene degradation have been investigated. Results show that the nitrobenzene degradation efficiency is up to 66.53 % while that of TOC removal is 32.21 % under 4-h visible light irradiation with 30 mg catalyst and 1.6 mM SPS. Moreover, LC-MS have been carried out to study the route of nitrobenzene degradation. Besides, ESR analysis reveals that both ●SO4- and ●OH radicals are generated sustainably under visible light irradiation, and more ●OH radicals can be detected owing to the synergic effect of photocatalysis and SPS activation. Interfacial charge transfer effect provides photoinduced electrons for the Fe3+/Fe2+ cycle in MIL-101(Fe), which boosts the SPS activation process, resulting in high photocatalytic activity.
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