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首页> 外文期刊>British Biotechnology Journal >Co-digestion of Food Waste and HumanExcreta for Biogas Production
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Co-digestion of Food Waste and HumanExcreta for Biogas Production

机译:厨余与人类排泄物共消化生产沼气

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The ever increasing cost of fossil fuels and its attendant pollution menace has provided the pedigree to consider alternative sources of energy. An investigation was launched into the design and construction of an Anaerobic Digester system from locally available raw materials using local technology and the production of biogas from food wastes and Human excreta generated within a University campus. The experiment lasted for 60 days using a 40-liters laboratory scale anaerobic digester. The volume of gas generated from the mixture was 84,750cm3 and comprised of 58% CH4, 24% CO2, and 19% H2S and other impurities. The physico-chemistry of the feedstock in the digester revealed an initial drop in pH to more acidic range and a steady increase 4.52 – 6.10. The temperature remained relatively constant at mesophilic range: 22.0oC– 30.5oC throughout the study. The Carbon/Nitrogen (C/N) ratio of the feedstock before digestion was within 139:1. Population distributions of the microflora show aerobic and anaerobic bacteria to include Klebsiella spp, Bacillus spp, Escherichia coli, Clostridium spp and a methanogen of the genera Methanococcus. In most developing nations of Sub-Saharan Africa where biomass is abundant, and where biogas technology is in its infant stage, the anaerobic digestion system could be the much awaited solution.
机译:化石燃料成本的不断上涨及其伴随的污染威胁提供了谱系,以考虑替代能源。已开始调查,使用当地技术从当地可得的原材料设计和建造厌氧消化器系统,并利用大学校园内产生的餐厨垃圾和人类排泄物生产沼气。使用40升实验室规模厌氧消化池进行的实验持续60天。由混合物产生的气体体积为84,750cm3,由58%的CH4、24%的CO2和19%的H2S和其他杂质组成。消化池中原料的物理化学性质表明,pH值最初下降至更酸性的范围,并稳定增加4.52-6.10。在整个研究中,温度在中温范围内保持相对恒定:22.0oC– 30.5oC。消化前原料的碳/氮(C / N)比在139:1之内。菌群的种群分布显示需氧和厌氧细菌,包括克雷伯菌属,芽孢杆菌属,大肠埃希菌,梭状芽孢杆菌和甲烷球菌属的产甲烷菌。在生物量丰富且沼气技术处于婴儿期的撒哈拉以南非洲的大多数发展中国家,厌氧消化系统可能是人们期待已久的解决方案。

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