Understanding microbial ecology can help improve biogas production in AD

454-Pyrosequencing and lipid fingerprinting were used to link anaerobic digestion (AD) process parameters (pH, alkalinity, volatile fatty acids (VFAs), biogas production and methane content) with the reactor microbial community structure and composition. AD microbial communities underwent stress con...

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Veröffentlicht in:The Science of the total environment 2018-11, Vol.642, p.754-763
Hauptverfasser: Ferguson, Robert M.W., Coulon, Frédéric, Villa, Raffaella
Format: Artikel
Sprache:eng
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Zusammenfassung:454-Pyrosequencing and lipid fingerprinting were used to link anaerobic digestion (AD) process parameters (pH, alkalinity, volatile fatty acids (VFAs), biogas production and methane content) with the reactor microbial community structure and composition. AD microbial communities underwent stress conditions after changes in organic loading rate and digestion substrates. 454-Pyrosequencing analysis showed that, irrespectively of the substrate digested, methane content and pH were always significantly, and positively, correlated with community evenness. In AD, microbial communities with more even distributions of diversity are able to use parallel metabolic pathways and have greater functional stability; hence, they are capable of adapting and responding to disturbances. In all reactors, a decrease in methane content to 60% methane had a more even distribution of bacterial diversity.•Methane  60% correlated to unidentified OTUs and Synergistaceae.
ISSN:0048-9697
1879-1026
DOI:10.1016/j.scitotenv.2018.06.007