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Anaerobic digestion of slaughterhouse waste: Main process limitations and microbial community interactions

pmid: 21030248
Fresh pig/cattle slaughterhouse waste mixtures, with different lipid-protein ratios, were characterized and their anaerobic biodegradability assessed in batch tests. The resultant methane potentials were high (270-300 L(CH4) kg(-1)(COD)) making them interesting substrates for the anaerobic digestion process. However, when increasing substrate concentrations in consecutive batch tests, up to 15 g(COD) kg(-1), a clear inhibitory process was monitored. Despite the reported severe inhibition, related to lipid content, the system was able to recover activity and successfully degrade the substrate. Furthermore, 16SrRNA gene-based DGGE results showed an enrichment of specialized microbial populations, such as β-oxidizing/proteolitic bacteria (Syntrophomonas sp., Coprothermobacter sp. and Anaerobaculum sp.), and syntrophic methanogens (Methanosarcina sp.). Consequently, the lipid concentration of substrate and the structure of the microbial community are the main limiting factors for a successful anaerobic treatment of fresh slaughterhouse waste.
Sewage, Swine, Industrial Waste, Proteins, Lipid Metabolism, Models, Biological, Refuse Disposal, Bacteria, Anaerobic, Species Specificity, Animals, Cattle, Computer Simulation, Abattoirs
Sewage, Swine, Industrial Waste, Proteins, Lipid Metabolism, Models, Biological, Refuse Disposal, Bacteria, Anaerobic, Species Specificity, Animals, Cattle, Computer Simulation, Abattoirs
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