Microbial community structure elucidates performance of Glyceria maxima plant microbial fuel cell

被引:0
|
作者
Ruud A. Timmers
Michael Rothballer
David P. B. T. B. Strik
Marion Engel
Stephan Schulz
Michael Schloter
Anton Hartmann
Bert Hamelers
Cees Buisman
机构
[1] Wageningen University,Sub
[2] Helmholtz Zentrum München,department of Environmental Technology
[3] German Research Center for Environmental Health,Department Microbe–Plant Interactions
[4] Helmholtz Zentrum München,Department Terrestrial Ecogenetics
[5] German Research Center for Environmental Health,undefined
来源
Applied Microbiology and Biotechnology | 2012年 / 94卷
关键词
454 amplicon sequencing; Microbial community; Plant microbial fuel cell; Renewable energy; Rhizosphere;
D O I
暂无
中图分类号
学科分类号
摘要
The plant microbial fuel cell (PMFC) is a technology in which living plant roots provide electron donor, via rhizodeposition, to a mixed microbial community to generate electricity in a microbial fuel cell. Analysis and localisation of the microbial community is necessary for gaining insight into the competition for electron donor in a PMFC. This paper characterises the anode–rhizosphere bacterial community of a Glyceria maxima (reed mannagrass) PMFC. Electrochemically active bacteria (EAB) were located on the root surfaces, but they were more abundant colonising the graphite granular electrode. Anaerobic cellulolytic bacteria dominated the area where most of the EAB were found, indicating that the current was probably generated via the hydrolysis of cellulose. Due to the presence of oxygen and nitrate, short-chain fatty acid-utilising denitrifiers were the major competitors for the electron donor. Acetate-utilising methanogens played a minor role in the competition for electron donor, probably due to the availability of graphite granules as electron acceptors.
引用
收藏
页码:537 / 548
页数:11
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