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In this study, we used multiple meta-omic approaches to characterize the microbial community and the active metabolic pathways of a stable industrial biogas reactor operating at thermophilic temperatures (60°C) and elevated levels of free ammonia (367 mg NH3-N/L).
ORGANISM(S): Methanosaeta Coprothermobacter 
2017-06-30 | PXD004538 | Pride
Taxonomic profiling of biofilm in a biogas reactor
16S rRNA gene-based analysis of prokaryotic communities in a biogas reactor
Biogas plants (BGPs) produce methane and carbon dioxide through the anaerobic digestion of agricultural waste. Identification of strategies for more stable biogas plant operation and increased biogas yields require better knowledge about the individual degradation steps and the interactions within t...
ORGANISM(S): environmental samples <Methanosarcinales> 
2019-05-03 | PXD009349 | Pride
Background: Methane yield and biogas productivity of biogas plants depend on microbial community structure and functionality, substrate supply, and general process parameters. Little is known, however, about the correlations between microbial community function and the process parameters. To close t...
ORGANISM(S): Acyrthosiphon pisum (Pea aphid) 
2016-04-19 | PXD003526 | Pride
Biogas reactor microbial community DNA samples
Metaproteomics was used to identify proteins from a mized community in a biogas reactor.
ORGANISM(S): Clostridia 
2016-08-19 | PXD004512 | Pride
Microbial diversity study of a biogas reactor running under at different temperature condition
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