2008Scientific Research and EssaysOpen access

Effect of some organic wastes on the biogas yield from carbonated soft drink sludge

E. O. Uzodinma, Akuzuo Uwaoma Ofoefule, J. I. Eze, I. Mbaeyi, N.D. Onwuka .

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Abstract

methane (76.5%), CO2 (20.1%), CO (2.2%), H2S (1.2%), CS:SW had methane (71.9%), CO2 (20.8%), CO (7.1%) and H2S (0.2%) and CS:RH had methane (73.6%), CO2 (18.4%), CO (7.5%) and H2S (0.2%). The overall results indicate that the low yield of flammable biogas from carbonated soft drink sludge could be enhanced significantly when blended with either soybean cake waste or pig dung.

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methane (76.5%), CO2 (20.1%), CO (2.2%), H2S (1.2%), CS:SW had methane (71.9%), CO2 (20.8%), CO (7.1%) and H2S (0.2%) and CS:RH had methane (73.6%), CO2 (18.4%), CO (7.5%) and H2S (0.2%). The overall results indicate that the low yield of flammable biogas from carbonated soft drink sludge could be enhanced significantly when blended with either soybean cake waste or pig dung.

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Available abstract

methane (76.5%), CO2 (20.1%), CO (2.2%), H2S (1.2%), CS:SW had methane (71.9%), CO2 (20.8%), CO (7.1%) and H2S (0.2%) and CS:RH had methane (73.6%), CO2 (18.4%), CO (7.5%) and H2S (0.2%). The overall results indicate that the low yield of flammable biogas from carbonated soft drink sludge could be enhanced significantly when blended with either soybean cake waste or pig dung.

Key concepts: Biogas, Methane, Yield (engineering), Waste management, Chemistry, Environmental science, Flammable liquid, Pulp and paper industry

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