Iron-organic frameworks as effective fenton-like catalysts for peroxymonosulfate decomposition in advanced oxidation processes

被引:0
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作者
Meng Li
Jiayu Song
Wei Han
King Lun Yeung
Shaoqi Zhou
Ce-Hui Mo
机构
[1] Jinan University,Guangdong Provincial Research Center for Environment Pollution Control and Remediation Materials, College of Life Science and Technology
[2] The Hong Kong University of Science and Technology,Department of Chemical and Biological Engineering
[3] Clear Water Bay,Division of Environment and Sustainability
[4] Kowloon,College of Resources and Environmental Engineering
[5] The Hong Kong University of Science and Technology,undefined
[6] Clear Water Bay,undefined
[7] Kowloon,undefined
[8] HKUST Shenzhen-Hong Kong Collaborative Innovation Research Institute,undefined
[9] Futian,undefined
[10] Guizhou University,undefined
来源
npj Clean Water | / 6卷
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摘要
Although Fenton-like reactions have been extensively used to treat various organic contaminants in wastewaters (oily wastewaters, landfill leachate, denitrification with Fenton oxidized non-degradable large molecular organic pollutants, and removal of phosphorus, etc.), the difficulty in catalyst recovery and the instability of catalytic activity limit their practical application. Herein, iron atoms were inserted in a metal-organic framework (FeNC) with dual reaction sites as highly reactive and stable electro-Fenton-like catalysts for the catalytic oxidation of organic pollutants via the electro-Fenton-like activation reaction of peroxymonosulfate (PMS) with fractional leaching of metal ions. Experiments and density functional theory (DFT) calculations indicate that FeNC with FeN4 and Fe–Fe active sites can rapidly deliver electrons for PMS dissociation. Further, an electrolysis reactor was constructed for the on-site generation of reactive oxygen species, which can stably and continuously purify various organic wastewaters. The combined use of an electrolysis reactor and magnetic catalyst in the current study provides a direction for the long-term remediation of organic pollutants on an industrial scale.
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