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Bioresour Technol ; 166: 288-94, 2014 Aug.
Article in English | MEDLINE | ID: mdl-24926601

ABSTRACT

Anaerobe fermentation of sugar beet pressed pulp was investigated in pilot-scale digesters. Thermophilic adaptation of mesophilic culture was monitored using chemical analysis and metagenomic characterization of the sludge. Temperature adaptation was achieved by increasing the temperature gradually (2 °C day(-1)) and by greatly decreasing the OLR. During stable run, the OLR was increased gradually to 11.29 kg VS m(-3)d(-1) and biogas yield was 5% higher in the thermophilic reactor. VFA levels increased in the thermophilic reactor with increased OLR (acetic acid 646 mg L(-1), propionic acid 596 mg L(-1)), then VFA decreased and the operation was manageable beside the relative high tVFA (1300-2000 mg L(-1)). The effect of thermophilic adaptation on the microbial communities was studied using a sequencing-based metagenomic approach. Connections between physico-chemical parameters and populations of bacteria and methanogen archaea were revealed.


Subject(s)
Adaptation, Physiological/physiology , Bacteria, Anaerobic/physiology , Beta vulgaris/metabolism , Biofuels , Bioreactors , Methane/biosynthesis , Bacteria, Anaerobic/genetics , Bacteria, Anaerobic/metabolism , Base Sequence , Beta vulgaris/chemistry , Chromatography, High Pressure Liquid , Computational Biology , Fermentation , Metagenome , Molecular Sequence Data , Pilot Projects , Sequence Analysis, DNA , Species Specificity , Temperature
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