Application of rumen microbes to enhance food waste hydrolysis in acidogenic leach-bed reactors
•Rumen microbes enhanced food waste hydrolysis in acidogenic leach bed reactor.•Production of chemical oxygen demand was increased by 16%.•Protein hydrolysis, assessed through nitrogen leaching, was increased by 27%.•Strong organic degraders of rumen microbes influence the metabolic pathway.•Signifi...
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Veröffentlicht in: | Bioresource technology 2014-09, Vol.168, p.64-71 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | •Rumen microbes enhanced food waste hydrolysis in acidogenic leach bed reactor.•Production of chemical oxygen demand was increased by 16%.•Protein hydrolysis, assessed through nitrogen leaching, was increased by 27%.•Strong organic degraders of rumen microbes influence the metabolic pathway.•Significant quantities of ethanol and butyrate were produced in acidogenic reactor.
Effect of rumen microorganisms on hydrolysis of food waste in leach bed reactor (LBR) was investigated. LBRs were inoculated (20%, w/w) with cow manure and anaerobically digested sludge at different ratios, 0:1 (LBR-A), 1:3 (LBR-B), 1:1 (LBR-C), 3:1 (LBR-D) and 1:0 (LBR-E). High volatile solids (VS) conversion efficiency of 68% was achieved in LBR-E. Compared with LBR-A, chemical oxygen demand, total soluble products and total Kjeldahl nitrogen leaching of LBR-E were increased by 16%, 14.3% and 27%, respectively. Recovery of the highest amounts of ethanol and butyrate in LBR-E indicated that the metabolic pathway mediated by rumen microorganisms was favorable for subsequent methanogenesis. Phylogenetic analysis confirmed that the enhanced hydrolysis in LBR-E was mainly due to strong degraders, e.g. Enterobacter, Bifidobacterium thermacidophilum and Caloramator sourced from cow manure. Results demonstrate that rumen microorganisms rapidly degrade the VS and produce useful VFAs with high methane yields in subsequent methanogenesis. |
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ISSN: | 0960-8524 1873-2976 |
DOI: | 10.1016/j.biortech.2014.03.085 |