Rapid microwave synthesis of Fe3O4-PVP@ZIF-67 as highly effective peroxymonosulfate catalyst for degradation of bisphenol F and its mechanism analysis

被引:84
作者
Cui, Jianan [1 ]
Liu, Tingting [1 ]
Zhang, Qian [2 ]
Wang, Ting [1 ]
Hou, Xiaohong [1 ]
机构
[1] Shenyang Pharmaceut Univ, Sch Pharmaceut Engn, Shenyang 110016, Liaoning, Peoples R China
[2] Shenyang Pharmaceut Univ, Sch Pharm, Shenyang 110016, Liaoning, Peoples R China
基金
中国国家自然科学基金;
关键词
Cobalt-based magnetic catalyst; Microwave-assisted; Bisphenol F; Peroxymonosulfate activation; Degradation mechanism; METAL-ORGANIC FRAMEWORKS; ARC FURNACE DUST; DIELECTRIC CHARACTERIZATION; ENHANCED DEGRADATION; ACTIVATION; WATER; EFFICIENT; SULFATE; NANOCRYSTALS; PERSULFATE;
D O I
10.1016/j.cej.2020.126453
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Various metal-based heterogeneous catalysts activated peroxymonosulfate for organic pollutants degradation are increasingly recognized as an environmentally important sewage treatment technology. In this study, polyvinyl pyrrolidone (PVP) modified Fe3O4 loaded ZIF-67 magnetic catalyst with transition metal cobalt ion was prepared for the first time by microwave-assisted solvothermal (MS) method within 30 min to activate peroxymonosulfate. The microwave synthesis process changed the time-consuming shortcoming of conventional method. The catalytic activity of the synthesized Fe3O4-PVP@ZIF-67 was assessed on bisphenol F (BPF) removal. The result showed 99.8% BPF was removed under the conditions of catalyst content of 0.15 g.L-1, PMS content of 0.3 mM, and pH without adjustment in 60 min. And the Fe3O4-PVP@ZIF-67/PMS system exhibited a quality catalytic performance when the solution pH of BPF varied from 3 to 11. Compared with humic acid (HA), inorganic anions (Cl-, H2PO4-, SO42-, HCO3-, and CO32-) showed slight effect to the degradation system. The quenching experiment verified that the main active substance in this system was SO4-center dot Based on the degradation intermediates identified by gas chromatography-mass spectrometer (GC-MS), the main degradation pathways were proposed for the degradation of BPF. Overall, Fe3O4-PVP@ZIF-67 as PMS activator is promising catalyst for sulfate radical-based wastewater treatment.
引用
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页数:13
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