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Enhanced visible light photo-Fenton-like degradation of tetracyclines by expanded perlite supported FeMo3Ox/g-C3N4 floating Z-scheme catalyst

光催化 催化作用 X射线光电子能谱 石墨氮化碳 煅烧 激进的 化学 电子顺磁共振 降级(电信) 珍珠岩 核化学 化学工程 光化学 材料科学 有机化学 工程类 物理 电信 核磁共振 冶金 计算机科学
作者
Yiyang Liu,Xuejiang Wang,Qiunan Sun,Yuan Meng,Zhenhua Sun,Siqing Xia,Jianfu Zhao
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:424: 127387-127387 被引量:124
标识
DOI:10.1016/j.jhazmat.2021.127387
摘要

In the conventional Fenton system, the relatively low efficiency of Fe (II) regeneration is a significant drawback. To address this shortcoming, a novel floating Z-scheme photo-Fenton catalyst FeMo3Ox/g-C3N4/EP was prepared by a facile dip-calcination method, in which iron and molybdenum oxides with mixed valence states (FeMo3Ox) and graphitic carbon nitride (g-C3N4) were loaded on the expanded perlite. The removal efficiencies reached the maximum at 98.0%, 93.1% and 97.1% for tetracycline, oxytetracycline and chlortetracycline, respectively, after 60 min dark adsorption and 60 min photo-Fenton process. The aid of dual ion (Fe and Mo) synergy system and photoreduction by Z-scheme photocatalyst enhanced the Fe (II) regeneration, resulting in the excellent performance. Radical scavenger experiment, electron spin resonance spectra (ESR) and X-ray photoelectron spectra (XPS) were used to confirm the mechanism of free radicals’ formation and Fe/Mo redox cycling. ·OH, ·O2- and 1O2 played important roles in the pollutant’s degradation, while the generation of ·O2- was enhanced due to the floatability in this system. The possible degradation pathways of TC were put forward according to the results of mass spectrum and Orbital-Weighted Fukui Function. Overall, this work provides new insights on the cooperation between iron-based mix oxides and semiconductor in the photo-Fenton system.
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