微生物燃料电池
阳极
阴极
内阻
分离器(采油)
功率密度
材料科学
电极
开路电压
批处理
发电
电气工程
电压
功率(物理)
化学
计算机科学
工程类
电池(电)
物理
物理化学
热力学
程序设计语言
量子力学
作者
Surajbhan Sevda,Xochitl Dominguez‐Benetton,Florian H. M. Graichen,Karolien Vanbroekhoven,Heleen De Wever,T.R. Sreekrishnan,Deepak Pant
标识
DOI:10.1080/15435075.2014.909363
摘要
Microbial fuel cells (MFCs) which are operated in continuous mode are more suitable for practical applications than fed batch ones. The aim of the present study was to characterize an air-cathode MFC operating in continuous mode and to determine the intrinsic properties for suitable performance and scalability. Air-cathode MFCs were constructed from plexiglass with a total working volume of 220 mL. Zirfon® separator used in this MFC had cross section area of 100 cm2. The air cathode MFCs were operated in fed-batch mode and then shifted to the continuous mode. To determine the behavior of anode and cathode in long term operation (274 days), their contribution in MFC performance was evaluated over time. Once the active biofilm was formed, power production and substrate consumption rate were significantly higher. The internal resistance increased with the passage of time. After stabilization of biofilm when the MFC was placed in close circuit by connecting an external resistance, the anode-reference and cathode-reference electrode behavior showed that anode potential is near to the bacterial cell inside potential. The maximum open circuit voltage achieved was 623 mV and the highest power and volumetric power density were 38.03 mW/m2 and 1296 mW/m3, respectively.
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