Potential for direct interspecies electron transfer in an electric-anaerobic system to increase methane production from sludge digestion
Direct interspecies electron transfer (DIET) between Geobacter species and Methanosaeta species is an alternative to interspecies hydrogen transfer (IHT) in anaerobic digester, which however has not been established in anaerobic sludge digestion as well as in bioelectrochemical systems yet. In this...
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Veröffentlicht in: | Scientific reports 2015-06, Vol.5 (1), p.11094-11094, Article 11094 |
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Sprache: | eng |
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Zusammenfassung: | Direct interspecies electron transfer (DIET) between
Geobacter
species and
Methanosaeta
species is an alternative to interspecies hydrogen transfer (IHT) in anaerobic digester, which however has not been established in anaerobic sludge digestion as well as in bioelectrochemical systems yet. In this study, it was found that over 50% of methane production of an electric-anaerobic sludge digester was resulted from unknown pathway. Pyrosequencing analysis revealed that
Geobacter
species were significantly enriched with electrodes. Fluorescence
in situ
hybridization (FISH) further confirmed that the dominant
Geobacter
species enriched belonged to
Geobacter metallireducens
. Together with
Methanosaeta
species prevailing in the microbial communities, the direct electron exchange between
Geobacter
species and
Methanosaeta
species might be an important reason for the “unknown” increase of methane production. Conductivity of the sludge in this electric-anaerobic digester was about 30% higher than that of the sludge in a control digester without electrodes. This study not only revealed for the first time that DIET might be the important mechanism on the methanogenesis of bioelectrochemical system, but also provided a new method to enhance DIET by means of bioelectric enrichment of
Geobacter
species. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/srep11094 |