恶臭假单胞菌
微生物燃料电池
碳水化合物
假单胞菌
化学
电
生化工程
制浆造纸工业
生物化学
食品科学
环境科学
微生物学
废物管理
细菌
生物
工程类
酶
遗传学
物理化学
电气工程
阳极
电极
作者
Xiaoyan Qi,Huangwei Cai,Xiaolei Wang,Xiaolei Wang,Ruijun Liu,Ting Cai,Sen Wang,Xueying Liu,Xia Wang,Xia Wang
标识
DOI:10.1016/j.engmic.2024.100148
摘要
Microbial fuel cells (MFCs) employing Pseudomonas putida B6-2 (ATCC BAA-2545) as an exoelectrogen have been developed to harness energy from various conventional substrates, such as acetate, lactate, glucose, and fructose. Owing to its metabolic versatility, P. putida B6-2 demonstrates adaptable growth rates on diverse, cost-effective carbon sources within MFCs, exhibiting distinct energy production characteristics. Notably, the anode chamber's pH rises with carboxylates' (acetate and lactate) consumption and decreases with carbohydrates' (glucose and fructose) utilization. The MFC utilizing fructose as a substrate achieved the highest power density at 411 mW m−2. Initial analysis revealed that P. putida B6-2 forms biofilms covered with nanowires, contributing to bioelectricity generation. These microbial nanowires are likely key players in direct extracellular electron transport through physical contact. This study established a robust foundation for producing valuable compounds and bioenergy from common substrates in bioelectrochemical systems (BESs) utilizing P. putida as an exoelectrogen.
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