Efficient degradation of rhodamine B using modified graphite felt gas diffusion electrode by electro-Fenton process

被引:0
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作者
Jiangnan Tian
Ayobami Matthew Olajuyin
Tingzhen Mu
Maohua Yang
Jianmin Xing
机构
[1] Chinese Academy of Sciences,National Key Laboratory of Biochemical Engineering, Institute of Process Engineering
[2] University of Chinese Academy of Sciences,School of Chemistry and Chemical Engineering
关键词
Electro-Fenton; Graphite felts modification; RhB; Mineralization current efficiency; Biodegradability;
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学科分类号
摘要
The electro-Fenton (EF) process treatment of 0.1-M (rhodamine B) RhB solution was studied with different graphite cathode materials, and graphite felt (GF) was selected as a promising material in further investigation. Then, the degradation performances of gas diffusion electrode (GDE) and graphite felt (GF) were compared, and GDE was confirmed to be more efficient in RhB removal. The operational parameters such as Fe2+ dosage and current density were optimized, and comparison among different modified methods—polytetrafluoroethylene-carbon black (PTFE-CB), polytetrafluoroethylene-carbon nanotube (PTFE-CNT), electrodeposition-CB, and electrodeposition-CNT—showed 98.49 % RhB removal by PTFE-CB-modified cathode in 0.05 M Na2SO4 at a current density of 50 A/m2 and an air flow rate of 1 L/min after 20 min. Meanwhile, after cathode modified by PTFE-CB, the mineralization efficiency and mineralization current efficiency performed absolutely better than the pristine one. Cyclic voltammograms, SEM images, contact angles, and BET surface area were carried out to demonstrate stronger current responses and higher hydrophilicity of GF after modified. The value of biochemical oxygen demand/chemical oxygen demand (BOD5/COD) increased from 0.049 to 0.331 after 90-min treatment, suggesting the solution was biodegradable, and the modified cathode was confirmed to be stable after ten circle runs. Finally, a proposed degradation pathway of RhB was put forward.
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页码:11574 / 11583
页数:9
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