TY - JOUR
T1 - Microbial community analysis in microbial fuel cell under non-strict anaerobic condition
T2 - synchronous generation of power and tobacco wastewater treatment
AU - Liu, Yutong
AU - Chen, Cong
AU - Li, Suxuan
AU - Ma, Shuhe
AU - Chen, Xiaoyu
AU - Hong, Jian
AU - Li, Xiaohu
AU - Wu, Zhiyong
N1 - Publisher Copyright:
© 2025 Elsevier B.V.
PY - 2025/10
Y1 - 2025/10
N2 - Tobacco wastewater poses a significant environmental threat due to its toxic constituents, which are difficult to remove using conventional treatment methods. Microbial fuel cells (MFCs) are promising devices harnessing the catabolic activity of microorganisms to produce electricity with wastewater treatment. In this study, MFCs were constructed to evaluate the performance of tobacco wastewater treatment and electrical energy generation under mildly anaerobic conditions. The MFCs supplied with various additional carbon sources (e.g., acetate, glucose, propionate, and butyrate) exhibited different acclimation capacities for tobacco wastewater treatment. The maximum voltage output of 0.58 V and power density of 193.60 mW/m2 were obtained, along with COD removal of 73.4 ± 2.93 %. The microbial community compositions revealed that Trichococcus was highly abundant in the anodic biofilm enrichment stage (7.46 %-21.07 %) and the wastewater treatment stage (16.22 %-36.55 %), which may play an important role in the electrical energy generation. This study firstly demonstrates that MFC is an effective and environmentally friendly technology for tobacco wastewater treatment and electrical energy generation under non-strict anaerobic condition.
AB - Tobacco wastewater poses a significant environmental threat due to its toxic constituents, which are difficult to remove using conventional treatment methods. Microbial fuel cells (MFCs) are promising devices harnessing the catabolic activity of microorganisms to produce electricity with wastewater treatment. In this study, MFCs were constructed to evaluate the performance of tobacco wastewater treatment and electrical energy generation under mildly anaerobic conditions. The MFCs supplied with various additional carbon sources (e.g., acetate, glucose, propionate, and butyrate) exhibited different acclimation capacities for tobacco wastewater treatment. The maximum voltage output of 0.58 V and power density of 193.60 mW/m2 were obtained, along with COD removal of 73.4 ± 2.93 %. The microbial community compositions revealed that Trichococcus was highly abundant in the anodic biofilm enrichment stage (7.46 %-21.07 %) and the wastewater treatment stage (16.22 %-36.55 %), which may play an important role in the electrical energy generation. This study firstly demonstrates that MFC is an effective and environmentally friendly technology for tobacco wastewater treatment and electrical energy generation under non-strict anaerobic condition.
KW - Aerotolerant exoelectrogens
KW - Microbial communities
KW - Microbial fuel cell (MFC)
KW - Tobacco wastewater treatment
UR - https://www.scopus.com/pages/publications/105009899406
U2 - 10.1016/j.bej.2025.109857
DO - 10.1016/j.bej.2025.109857
M3 - 文章
AN - SCOPUS:105009899406
SN - 1369-703X
VL - 222
JO - Biochemical Engineering Journal
JF - Biochemical Engineering Journal
M1 - 109857
ER -