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Assessment of biogas production in Argentina from co-digestion of sludge and municipal solid waste

机译:通过污泥和城市固体废物共同消化评估阿根廷的沼气生产

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摘要

In Argentina, there is an important potential to utilize organic waste to generate bioenergy. This work analyzes the environmental impacts and the energetic and economic requirements of the biogas produced by digesting the sewage sludge (SS) produced in a wastewater treatment plant in a medium city in Argentina. The SS is co-digested with the organic fraction of municipal solid waste (OFMSW), and the basis of this study is the life cycle assessment (LCA). The LCA is performed according to ISO 14040-44 using the SimaPro simulator. First, the transport of the raw materials to the biogas plant was defined. Then, the co-digestion and the biogas treatment for final use were evaluated. The co-digestion was improved with glycerol, and the generation of biogas was estimated using the GPS-X software. Two alternatives for the end use of biogas were considered: combined heat and power (CHP) and biomethane generation. For the first, H_2S and water vapor were removed from the raw biogas stream, and for the second, also CO_2 was removed. The H_2S removal process was simulated in the SuperPro software by anaerobic biofiltration. The same software was used to simulate the removal of CO_2 absorption-desorption with water as solvent. Finally, the environmental impacts related to the end use of biogas (CHP and biomethane) were evaluated. The environmental, energetic and economic analyses showed that the co-digestion of SS and OFMSW has great potential for reducing the environmental impacts and increasing the economic and energetic value of the substances via the production of biomethane, electricity and, potentially, fertilizer.
机译:在阿根廷,利用有机废物产生生物能具有重要的潜力。这项工作分析了通过消化阿根廷中部城市的污水处理厂产生的污水污泥(SS)而产生的沼气的环境影响以及能量和经济要求。 SS与城市固体废物的有机部分(OFMSW)一起被消化,这项研究的基础是生命周期评估(LCA)。使用SimaPro模拟器根据ISO 14040-44执行LCA。首先,定义了原料到沼气厂的运输。然后,对最终使用的共消化和沼气处理进行了评估。用甘油改善了共消化,并使用GPS-X软件估算了沼气的产生。考虑了沼气最终用途的两种替代方案:热电联产(CHP)和沼气的产生。首先,从原始沼气流中除去H_2S和水蒸气,第二,还除去CO_2。通过厌氧生物滤池在SuperPro软件中模拟了H_2S的去除过程。使用相同的软件模拟以水为溶剂去除CO_2的吸收-解吸。最后,评估了与沼气(CHP和沼气)最终用途有关的环境影响。环境,能量和经济方面的分析表明,SS和OFMSW的共同消化在通过生产生物甲烷,电力以及潜在的肥料来减少环境影响和增加物质的经济和能量价值方面具有巨大潜力。

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  • 来源
    《Waste Management》 |2017年第3期|195-205|共11页
  • 作者单位

    Instituto de Desarrollo Tecnologico para la Industria Quimica (INTEC), Universidad Nacional del Litoral-CONICET, Gueemes 3450, 3000 Santa Fe, Argentina;

    Instituto de Desarrollo Tecnologico para la Industria Quimica (INTEC), Universidad Nacional del Litoral-CONICET, Gueemes 3450, 3000 Santa Fe, Argentina;

    Instituto de Desarrollo Tecnologico para la Industria Quimica (INTEC), Universidad Nacional del Litoral-CONICET, Gueemes 3450, 3000 Santa Fe, Argentina,Facultad de Ingenieria y Ciencias Hidricas, Universidad Nacional del Litoral, Ruta Nacional N° 168 km 472.4, 3000 Santa Fe, Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Co-digestion; Waste treatment; CHP; Biomethane; Digestate management;

    机译:共消化;废物处理;CHP;生物甲烷地政管理;

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