International Journal of Hydrogen Energy · 2014 · 93 citations · 38 references
Bacterial ShiftsEngineeringBioenergyBiogasBioenergeticsBacterial EnrichmentMicrobial Electrochemical SystemBioelectrochemical ReactorMicrobial EcologyAnaerobic DigestionEnvironmental MicrobiologyMicrobiologyBiofuel CellMembraneless SystemMedicineBioelectrochemical SystemAcetate ProductionBioelectrochemical Systems
A number of studies suggested that anaerobic digestion processes can be enhanced by inserting electrodes in anaerobic digesters, however a thorough work with relation to the bacterial shifts, especially with regards to acetogenesis, is lacking. In our work we investigated the performance and the respective shifts in the bacterial composition of bioelectrochemical systems producing methane and acetate from synthetic wastewater. A membraneless microbial electrolysis cell (MEC) could produce net energy with methane as the main end-product, however a membrane system was promoting acetogenesis and failed to operate as an energy producer. Bacteria present in the effluent of the membraneless system could also produce acetate with cathodic efficiencies over 60% when the cathode potentials dropped below −1000 mV vs. SHE. Different bacterial species were enriched on the two electrodes of each MEC, despite the fact that the electrodes were hydraulically connected and within a close distance from each other. Acetobacterium spp. and Acetoanaerobium spp., which could be found on the cathode of the membrane system, can be considered responsible for acetate production and decreased energy efficiency.
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Standard methods: For the examination of water and waste water
Analytical Biochemistry · 1990 · 72.5K citations · Full text
16S ribosomal DNA amplification for phylogenetic study
W G Weisburg, Susan M. Barns, Dale A. Pelletier et al. · Journal of Bacteriology · 1991 · 11.6K citations · Full text
Biology, Ribosomal Dna Amplification, Microbial Systematics +15
Ribosomal Database Project: data and tools for high throughput rRNA analysis
James R. Cole, Qiong Wang, Jordan Fish et al. · Nucleic Acids Research · 2013 · 4.5K citations · Full text