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单室结构土壤微生物燃料电池发电性能的影响因子研究
作者姓名:DENG Huan  WU Yi-Cheng  ZHANG Fan  HUANG Zong-Chuan  CHEN Zheng  XU Hui-Juan  ZHAO Feng
作者单位:[1]Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021(China) [2]Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085 (China) [3]Department of Environmental Science and Engineering, Nanjing Normal University, Nanjing 210046 (China)
基金项目:Supported by the Main Direction Program of Knowledge Innovation of Chinese Academy of Sciences (No. KZCXZ-EW-402), the Hundred Talents Program of Chinese Academy of Sciences, the International S&;T Cooperation Program of China (No. 2011DFBgl710), and the China Postdoctoral Science Foundation (Nos. 2011M500410 and 2012T50142).
摘    要:There is limited information about the factors that affect the power generation of single-chamber microbial fuel cells (MFCs) using soil organic matter as a fuel source. We examined the effect of soil and water depths, and temperature on the performance of soil MFCs with anode being embedded in the flooded soil and cathode in the overlaying water. Results showed that the MFC with 5 cm deep soil and 3 cm overlaying water exhibited the highest open circuit voltage of 562 mV and a power density of 0.72 mW m-2. The ohmic resistance increased with more soil and water. The polarization resistance of cathode increased with more soil while that of anode increased with more water. During the 30 d operation, the cell voltage positively correlated with temperature and reached a maximum of 162 mV with a 500 ft external load. After the operation, the bacterial 16S rRNA gene from the soil and anode was sequenced. The bacteria in the soil were more diverse than those adhere to the anode where the bacteria were mainly affiliated to Eseherichia coli and Deltaproteobacteria. In summary, the two bacterial groups may generate electricity and the electrical properties were affected by temperature and the depth of soil and water.

关 键 词:微生物燃料电池  发电性能  单室  土壤有机质  淹水土壤  细菌群体  rRNA基因  极化电阻
收稿时间:5 July 2013

Factors affecting the performance of single-chamber soil microbial fuel cells for power generation
DENG Huan,WU Yi-Cheng,ZHANG Fan,HUANG Zong-Chuan,CHEN Zheng,XU Hui-Juan,ZHAO Feng.Factors affecting the performance of single-chamber soil microbial fuel cells for power generation[J].Pedosphere,2014,24(3):330-338.
Authors:DENG Huan  WU Yi-Cheng  ZHANG Fan  HUANG Zong-Chuan  CHEN Zheng  XU Hui-Juan and ZHAO Feng
Institution:1Key Laboratory of Urban Environment and Health, Institute of Urban Environment, Chinese Academy of Sciences, Xiamen 361021 (China) 2Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085 (China) 3Department of Environmental Science and Engineering, Nanjing Normal University, Nanjing210046 (China)
Abstract:There is limited information about the factors that affect the power generation of single-chamber microbial fuel cells (MFCs) using soil organic matter as a fuel source. We examined the effect of soil and water depths, and temperature on the performance of soil MFCs with anode being embedded in the flooded soil and cathode in the overlaying water. Results showed that the MFC with 5 cm deep soil and 3 cm overlaying water exhibited the highest open circuit voltage of 562 mV and a power density of 0.72 mW m–2. The ohmic resistance increased with more soil and water. The polarization resistance of cathode increased with more soil while that of anode increased with more water. During the 30 d operation, the cell voltage positively correlated with temperature and reached a maximum of 162 mV with a 500 Ω external load. After the operation, the bacterial 16S rRNA gene from the soil and anode was sequenced. The bacteria in the soil were more diverse than those adhere to the anode where the bacteria were mainly affiliated to Escherichia coli and Deltaproteobacteria. In summary, the two bacterial groups may generate electricity and the electrical properties were affected by temperature and the depth of soil and water.
Keywords:electrogenic bacteria  impedance  soil depth  soil organic matter  voltage
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