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Biomethane Production as an Alternative Bioenergy Source from Codigesters Treating Municipal Sludge and Organic Fraction of Municipal Solid Wastes

机译:从沼气处理城市污泥和城市固体废物的有机组成中分离出沼气作为替代生物能源

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摘要

Energy recovery potential of a mesophilic co-digester treating OFMSW and primary sludge at an integrated biomethanization plant was investigated based on feasibility study results. Since landfilling is still the main solid waste disposal method in Turkey, land scarcity will become one of the most important obstacles. Restrictions for biodegradable waste disposal to sanitary landfills in EU Landfill Directive and uncontrolled long-term contamination with gas emissions and leachate necessitate alternative management strategies due to rapid increase in MSW production. Moreover, since energy contribution from renewable resources will be required more in the future with increasing oil prices and dwindling supplies of conventional energy sources, the significance of biogas as a renewable fuel has been increased in the last decade. Results indicated that almost 93% of annual total cost can be recovered if 100% renewable energy subsidy is implemented. Besides, considering the potential revenue when replacing transport fuels, about 26 heavy good vehicles or 549 cars may be powered per year by the biogas produced from the proposed biomethanization plant (PE = 100,000; XPS = 61 g TS/PE·day; XSS-OFMSW = 50 g TS/PE·day).
机译:基于可行性研究结果,研究了综合生物甲烷化装置中处理OFMSW和原始污泥的中温共消化器的能量回收潜力。由于填埋仍是土耳其主要的固体废物处理方法,土地稀缺将成为最重要的障碍之一。欧盟垃圾填埋指令中对卫生垃圾填埋场进行可生物降解废物处置的限制以及由于气体排放和渗滤液产生的不受控制的长期污染,由于城市固体废弃物产量的快速增长,必须采取替代管理策略。此外,由于随着石油价格的上涨和常规能源供应的减少,未来将需要更多来自可再生资源的能源,因此在过去十年中,沼气作为可再生燃料的重要性日益提高。结果表明,如果实施100%的可再生能源补贴,则可以收回近93%的年度总成本。此外,考虑到更换运输燃料的潜在收益,拟建的生物甲烷化厂产生的沼气每年可为大约26辆重型货车或549辆汽车提供动力(PE = 100,000; XPS = 61 g TS / PE·天; XSS- OFMSW = 50微克TS / PE·天)。

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