Iron Oxide Anchored on Porous Carbon Derived from Metal-Organic Frameworks as an Efficient Catalyst toward In Situ Generation of H2O2 and a Hydroxyl Radical for Methylene Blue Degradation in Microbial Fuel Cells

被引:6
|
作者
Chen, Liu [1 ,2 ]
Xie, Jinling [1 ]
Huang, Li [1 ]
Gong, Xiaobo [1 ,3 ,4 ]
机构
[1] Sichuan Normal Univ, Coll Chem & Mat Sci, Chengdu 610066, Sichuan, Peoples R China
[2] Ziyang Coll Environm Sci & Technol, Ziyang 641300, Sichuan, Peoples R China
[3] Minist Educ China, Key Lab Land Resources Evaluat & Monitoring Southw, Chengdu 610066, Peoples R China
[4] Key Lab Special Waste Water Treatment Sichuan Prov, Chengdu 610066, Sichuan, Peoples R China
关键词
ELECTRO-FENTON PROCESS; OXYGEN REDUCTION REACTION; WASTE-WATER TREATMENT; HYDROGEN-PEROXIDE; FE3O4; NANOPARTICLES; PROCESS DRIVEN; ELECTROCATALYSTS; POLLUTANTS;
D O I
10.1021/acs.energyfuels.2c04185
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
In spite of the huge challenge of treating organic dye wastewater, bioelectrochemical systems are gaining attention due to their ability to treat dye wastewater in an ecofriendly and low-consumption manner. In this study, a porous CZIF-8/Fe3O4 composite was prepared using a metal-organic framework material as a precursor and used as a bioelectro-Fenton catalyst in a microbial fuel cell-combined electron-Fenton (MFC-EF) system for in situ H2O2 generation and center dot OH production. The abundant pyrrole-N (62.37%) in CZIF-8 was the main active site for the reduction of oxygen to H2O2, and the in situ-generated H2O2 was immediately heterogeneously catalyzed by Fe3O4 to center dot OH for methylene blue (MB) degradation. The maximum hydrogen peroxide yield in the MFC-EF system with CZIF-8/Fe3O4 was 45.1 mu mol/L and the maximum power density was 146.0 mW/ m2. The degradation efficiency of MB was 92.64% with a kinetic rate constant of 0.176 h-1 at 23 h in the MFC-EF system with CZIF-8/Fe3O4. After five cycles of long-term operation, the MB removal efficiency decreased by only 19.7%, indicating that CZIF-8/ Fe3O4 was stable in the MFC-EF system. This research provides a novel strategy to construct an electrocatalyst for recovering energy and degrading pollutants simultaneously in a microbial fuel cell-combined electron-Fenton system.
引用
收藏
页码:5469 / 5477
页数:9
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