Coupling electric energy and biogas production in anaerobic digesters – impacts on the microbiome

The combination of anaerobic digestion (AD) and microbial electrochemical technologies provides the opportunity to efficiently produce methane and electrical energy from complex biomass. Enhanced methane production and system stability have been reported but the causes (electrolysis or microbial-ele...

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Published inRSC advances Vol. 5; no. 40; pp. 31329 - 31340
Main Authors Koch, Christin, Kuchenbuch, Anne, Kretzschmar, Jorg, Wedwitschka, Harald, Liebetrau, Jan, Mueller, Susann, Harnisch, Falk
Format Journal Article
LanguageEnglish
Published 01.01.2015
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Summary:The combination of anaerobic digestion (AD) and microbial electrochemical technologies provides the opportunity to efficiently produce methane and electrical energy from complex biomass. Enhanced methane production and system stability have been reported but the causes (electrolysis or microbial-electrochemical interactions) are less understood. Using the model substrate corn silage it is demonstrated that, for conditions allowing microbiome growth and adaptation, the methane yield of combined reactors remains constant (216 ( plus or minus 29) mL g sub(odm) super(-1)) while a second product, electrons (q= 14.4 ( plus or minus 0.8) kC, j sub(max) = 1.34 mA cm super(-2) geometric current density), is also generated. The combined strategy allowed up to a 27% increase in total yield while the reactor community and its dynamics over time were not affected. A typical AD composition of Firmicutes, Bacteroidetes, Proteobacteria, and Synergistetes(bacteria) as well as Methanosarcina, Methanoculleus and Methanobacterium(archaea) was found in the bulk liquid. Specific enrichments of Geobacter(anode) and Methanobacterium(cathode) were of functional relevance.
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ISSN:2046-2069
2046-2069
DOI:10.1039/c5ra03496e