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Magnetic recoverable MnFe2O4 and MnFe2O4-graphene hybrid as heterogeneous catalysts of peroxymonosulfate activation for efficient degradation of aqueous organic pollutants

催化作用 化学 水溶液 甲基橙 石墨烯 罗丹明B 氧化物 无机化学 化学工程 混合材料 激进的 光催化 降级(电信) 核化学 有机化学 电信 计算机科学 工程类
作者
Yunjin Yao,Yunmu Cai,Lu Fang,Fengyu Wei,Xiaoyao Wang,Shaobin Wang
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:270: 61-70 被引量:494
标识
DOI:10.1016/j.jhazmat.2014.01.027
摘要

Magnetic iron based materials are generally effective for many catalytic reactions and can be magnetically recovered after application, showing advantages than other metal oxides. In the present work, magnetic MnFe2O4 nanoparticle and MnFe2O4-reduced graphene oxide (rGO) hybrid were prepared and used as catalysts to activate peroxymonosulfate (PMS) to oxidatively degrade various organic pollutants in water. From a process of chemical deposition and reduction, MnFe2O4-rGO hybrids were produced with nanosized MnFe2O4 particles (ca. 13.2 nm). It was found that MnFe2O4 or MnFe2O4-rGO presented high activity in activating PMS to produce sulfate radicals for degradation of organic dyes (Methyl violet, Methyl orange, Methylene blue, Orange II and Rhodamine B) and could be separated with a magnet without any loss. The reaction kinetics, effect of different ion species CL−,HCO3−,CH3COO−andNO3− and Cl− strength, reaction temperature (25–65 °C), catalytic stability, as well as degradation mechanism were comprehensively studied. The lower activation energy on MnFe2O4-rGO (25.7 kJ/mol) justify the higher chemical performance than that of MnFe2O4 (31.7 kJ/mol), suggesting that graphene plays a significant role in the enhanced degradation of dyes. More importantly, the as-prepared MnFe2O4 and MnFe2O4-rGO hybrid exhibited stable performance to remove the organic pollutants in wastewater with easy recycling and good stability by successive degradation experiments.
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