TiO2/CdS composite photocathode improves the performance and degradation of wastewater in microbial fuel cells

IF 4.1 Q2 CHEMISTRY, ANALYTICAL Analytical science advances Pub Date : 2022-04-05 DOI:10.1002/ansa.202100062
Jingying Ma, Zhihao An, Wenwen Zhang, Jia Shen, Yulin Qi, Donghui Chen
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Abstract

Optimization of dye decolourization for wastewater and power production are explored in dual-chamber microbial fuel cells (MFCs) with TiO2/CdS photocathodes. The rapid reduction of azo dye methylene blue (MB) and power production were enhanced with TiO2/CdS photocathode under illumination. The analysis of electrochemical impedance spectra indicated that the photocatalysis of TiO2/CdS accelerated the electron transfer process of photoelectrode reduction. Moreover, the UV-visible light spectrophotometer showed that the maximum degradation of the MFCs was 98.25%, which illustrated that MB may be cleaved by photoelectrons generated by light irradiation on the illuminated TiO2/CdS photocathode. Finally, the power production of MFCs in this work promoted reductive decolourization of the dye MB solution.

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TiO2/CdS复合光电阴极提高了微生物燃料电池废水的性能和降解能力
研究了TiO2/CdS光电阴极双室微生物燃料电池(MFCs)对废水和电力生产染料脱色的优化工艺。在光照下,TiO2/CdS光电阴极增强了偶氮染料亚甲基蓝(MB)的快速还原和产电能力。电化学阻抗谱分析表明,TiO2/CdS的光催化加速了光电极还原的电子转移过程。紫外-可见分光光度计显示mfc的最大降解率为98.25%,说明光照射TiO2/CdS光电阴极产生的光电子可能导致MB被切割。最后,本研究中mfc的功率产生促进了染料MB溶液的还原脱色。
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