Effects of temporary external voltage on the performance and community of microbial fuel cells
Jing Guo, Jianping Cheng, Jiaquan Wang, Zerui Zhang +2
AI summary
70% confidenceTemporary external voltage affects MFC performance, with optimal voltage of 1.1 V achieving highest current density and efficiency of nitrate removal.
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Abstract
Abstract This study evaluated the effects of temporary external voltage on the performance of two-chambered microbial fuel cells (MFC) that use nitrate wastewater as a substrate. Results indicate that the external voltage affected the performance of the MFC during their operation, and this effect remained even after the voltage was removed. The degradation efficiency of the chemical oxygen demand increased in the MFC under external voltages of 0.5, 0.8, and 1.1 V, and the optimal applied voltage was 1.1 V. Compared with the control group without external voltages, the MFC under a voltage of 1.1 V achieved higher current densities and efficiency of nitrate removal during their operation. The MFC with an applied voltage of 1.1 V also achieved the highest maximum power density of 2,035.08 mW/m³. The applied voltages of 0.5 and 0.8 V exerted a positive effect on the performance of the MFC. High-throughput sequencing was used to explore the anode and cathode biofilms. Results showed that the influence was highly associated with microbial community in bio-anode. The predominant functional family changed from Methanotrichaceae during start-up to Flavobacteriaceae in a steady phase.
Key findings
- External voltage of 1.1 V increased degradation efficiency of chemical oxygen demand.
- MFC under 1.1 V achieved highest maximum power density of 2,035.08 mW/m³.
- High-throughput sequencing showed influence of external voltage on microbial community in bio-anode.
Keywords
Identifiers
- Journal
- Water Science and Technology
- Year
- 2020