Guo Haiying, Xie Shuixiang, Huang Chunfeng, Tang Shanfa, Geng Xiaoheng, Jia Xinlei
College of Chemical Engineering and Safety, Binzhou University, Binzhou, 256600, China.
CNPC Research Institute of Safety & Environment Technology, Beijing, 100083, China.
Environ Sci Pollut Res Int. 2023 Jan;30(2):3697-3706. doi: 10.1007/s11356-022-22467-1. Epub 2022 Aug 11.
Electricity-generating bacteria as biocatalysts for microbial fuel cells (MFCs), their species, and power generation performance determine the pollution control and power generation performance of MFCs. And there are few studies on the types and performance of electricity-generating bacteria isolated from oily sludge microbial fuel cells. For improving the power generation performance of oily sludge MFCs, an electricity-generating bacterium was isolated from the oily sludge. More importantly, the adaptability of nitrogen to phosphorus ratio, temperature, and pH of the electricity-generating bacteria were adjusted by a controlled variable method. The results of this study showed that the electricity-generating bacterium was identified as Bacillus cereus, with a rod-shaped cell, about 0.5-1.0 μm in length. The optimal nitrogen-phosphorus ratio, temperature, and pH of MFCs were 4.67:1, 25 ℃, and pH = 7, respectively. Its maximum power density, COD, and oil removal rate was up to 65 mW·m, 90.51%, and 87.76%, respectively. The study of this functional bacterium will provide beneficial assistance for the improvement of oil removal and power generation performance of oily sludge MFCs.
产电细菌作为微生物燃料电池(MFCs)的生物催化剂,其种类和发电性能决定了MFCs的污染控制和发电性能。然而,关于从含油污泥微生物燃料电池中分离出的产电细菌的类型和性能的研究却很少。为了提高含油污泥MFCs的发电性能,从含油污泥中分离出一种产电细菌。更重要的是,通过控制变量法调节了产电细菌对氮磷比、温度和pH值的适应性。本研究结果表明,该产电细菌被鉴定为蜡样芽孢杆菌,细胞呈杆状,长度约为0.5-1.0μm。MFCs的最佳氮磷比、温度和pH值分别为4.67:1、25℃和pH=7。其最大功率密度、COD和除油率分别高达65mW·m、90.51%和87.76%。对这种功能细菌的研究将为提高含油污泥MFCs的除油和发电性能提供有益的帮助。