微生物燃料电池
亚甲蓝
光催化
废物管理
燃料电池
晋升(国际象棋)
化学
电
环境化学
化学工程
发电
业务
有机化学
环境科学
催化作用
物理
政治学
电气工程
工程类
功率(物理)
量子力学
政治
法学
作者
Jixiang Zou,Qinghuan Chang,Zhishuai Yuan,Mei Yan,Xiaojun Han,Chongshen Guo
标识
DOI:10.1016/j.jpowsour.2022.231697
摘要
The photocatalysis promoted microbial fuel cell (photo-MFC) system is designed to improve the degradation efficiency of recalcitrant organic pollutants in wastewater. In order to avoid the damage of UV light and reactive oxygen species to microorganisms, narrow bandgap Ag 3 PO 4 photocatalyst is chosen and separated with TiN bioanode in anode chamber of MFC. Under visible light irradiation, the synergistic effect between photodegradation and biodegradation yielded a decolorization efficiency of 95.8% MB and a maximum power density of 2.90 W m −2 for 10 mg L −1 MB co-substrate with sodium acetate. The chemical oxygen demand (COD) and total organic carbon (TOC) removal efficiencies of co-substrate in the photo-MFC system are 83.21% and 72.47%, much higher than that of photocatalysis alone (8.67% for COD and 9.65% for TOC). All of the degradation efficiency, power density and mineralization capacity of the photo-MFC system are higher than that of single MFC or photocatalysis. Microbial community analysis shows that Pseudomonas (73.75%) and Geobacter (19.62%) are the main genera of the bioanode in the photo-MFC system. The abundance of Pseudomonas is increased by photocatalysis. This photo-MFC coupled system has great potential application in wastewater treatment and energy recovery. • A new photo-MFC coupled system is designed for MB removal and energy recovery. • Photocatalysis enhances decolorization of MB and increases the power density of MFC. • MFC improves the mineralization and the stability of Ag 3 PO 4 photocatalysis. • Pseudomonas and Geobacter are the main genera in the photo-MFC system.
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