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Recycling municipal solid waste utilizing gasification technology: a case study

机译:利用气化技术回收市政固体废物:案例研究

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Reliable, affordable, and clean energy supply is of considerable importance for the society, economy, and the environment. Renewable energy sources can provide several times the world's energy demand. Biomass energy is considered a promising clean energy option for the reduction in greenhouse gas emissions and energy dependency. Among feasible technologies, biomass gasification has been considered as an enabling technology for municipal solid waste (MSW) conversion systems. The synthesis gas produced in waste-to-energy gasification of MSW can lead to their increased role in electricity generation in the future and reduces waste disposal costs. In this study, a thermodynamic equilibrium model was developed based on the downdraft fixed-bed gasifier to evaluate the effect of waste moisture content on synthesis gas composition. Besides, the equilibrium temperature of the gasifier and heating value of synthesized gas from the downdraft fixed-bed gasifier have been analyzed. Municipal solid waste of Tehran is considered as the main feed of the proposed system. The modeling results showed reasonable agreement with the experiment. The effect of operating condition on fuel moisture content and gasifier temperature was investigated. The effect of fuel moisture content on syngas compositions was also studied. The hydrogen content in the synthesis gas composition increases slightly initially to 17.9% (in moisture content 18%) but then starts reducing again. Besides, the effect of reactor temperature on synthesis gas composition was investigated.
机译:可靠,实惠,清洁能源供应对社会,经济和环境具有相当重要的重要性。可再生能源可以提供世界上的多次能源需求。生物质能量被认为是有希望的清洁能源选择,用于减少温室气体排放和能量依赖性。在可行的技术中,生物量气化被认为是城市固体废物(MSW)转换系统的能力技术。在MSW的废物到能量气化中产生的合成气体可以导致其在未来发电中的作用增加,并降低了废物处理成本。在这项研究中,基于下行流动床气化器开发了热力学平衡模型,以评估废水含量对合成气组合物的影响。此外,已经分析了气化器的平衡温度和来自下游固定床气化器的合成气体的加热值。德黑兰市政固体浪费被认为是所提出的系统的主要饲料。建模结果显示与实验一致。研究了操作条件对燃料水分含量和气化器温度的影响。还研究了燃料水分含量对合成气组合物的影响。合成气体组合物中的氢含量略微增加至17.9%(在水分含量18%),但随后再次开始还原。此外,研究了反应器温度对合成气组合物的影响。

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