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Evaluating the urban metabolism sustainability of municipal solid waste management system: An extended exergy accounting and indexing perspective

机译:评估市政固体废物管理系统的城市新陈代谢可持续性:延长的核对会计和索引视角

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摘要

In this study, Extended Exergy Accounting was adopted to develop an accounting model to evaluate the performance of a Municipal Solid Waste Management System. Furthermore, urban metabolism sustainability index for waste was also proposed to represent the unified society-economy-environment impacts of the MSWMS under the framework of a comprehensive sustainability evaluation. A detailed analysis of wood and horticultural waste treatment scenarios in Singapore was done as a case study. It was found that the gasification scenario theoretically performs significantly better than the incineration scenario, in terms of energy carrier consumption, emissions, thermodynamic efficiency and sustainability. Analysis results show that, if extrapolated to Singapore's total wood and horticultural waste, gasification technology has potential to reduce energy consumption and increase electricity output. An uncertainty analysis was carried out and it was found that the main extended exergetic parameters of the two scenarios considered were in the range of 3-8%, thus confirming the reliability of the accounting results. A sensitivity analysis of the urban metabolism sustainability index for waste was conducted for the gasification scenario to identify key influencing factors and seek potential improvements; this was done by considering changes in four variables: transportation distance, electrical efficiency, working hour increment and gross capital cost per ton waste treated. It was found that, to ensure the feasibility and sustainability of gasification scenario, the following are required: keeping the electricity production efficiency greater than 21.33%; the transportation distance between the gasification power plant and source of wood and horticultural waste should be kept within 17.08 km; employment of per kton annual treatment capacity should be less than 0.14 workers; wood and horticultural waste source should control the waste collection frequency of no more than 3 times per day and the number of workers participating in the collection each time is less than 4 persons, totaling to 12 workers per day.
机译:在这项研究中,通过了扩展的声明会计来制定会计模式,以评估市政固体废物管理系统的表现。此外,还提出了废物的城市新陈代谢可持续性指数,以代表统一的可持续性评估框架下MSWM的统一社会 - 经济环境影响。对新加坡的木材和园艺废物处理情景进行了详细分析作为案例研究。有人发现,在能量载体消耗,排放,热力学效率和可持续性方面,气化方案理论上比焚烧场景显着更好地表现得明显好。分析结果表明,如果外推到新加坡的总木材和园艺废物,气化技术有可能降低能耗并增加电力输出。进行了不确定性分析,发现两种情况的主要延长前进参数在3-8%的范围内,从而确认了会计结果的可靠性。对气化方案进行了对废物的城市新陈代谢可持续性指数的敏感性分析,以确定关键影响因素并寻求潜在的改进;这是通过考虑四个变量的变化来完成的:运输距离,电学效率,工作小时增量和每吨废物的总资本成本。有人发现,为了确保气化方案的可行性和可持续性,需要以下内容:保持电力生产效率大于21.33%;气化电厂与木材和园艺废物来源之间的运输距离应保持在17.08公里范围内;每克尔顿年度治疗能力的就业应少于0.14名工人;木材和园艺废物来源应控制每天不超过3次的废物收集频率,每次参加该系列的工人数量少于4人,总额为每天12名工人。

著录项

  • 来源
    《Applied Energy》 |2021年第15期|117254.1-117254.21|共21页
  • 作者单位

    Shanghai Jiao Tong Univ Sch Mech Engn Dept Mech Engn 800 Dongchuan Rd Shanghai 200240 Peoples R China;

    NUS Environm Res Inst E2S2 1 Create Way 15-02 Singapore 138602 Singapore;

    Sch Design & Environm Dept Built Environm 4 Architecture Dr Singapore 117566 Singapore;

    Natl Univ Singapore Dept Chem & Biomol Engn 4 Engn Dr Singapore 117585 Singapore;

    Shanghai Jiao Tong Univ Sch Mech Engn Dept Mech Engn 800 Dongchuan Rd Shanghai 200240 Peoples R China|NUS Environm Res Inst E2S2 1 Create Way 15-02 Singapore 138602 Singapore;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Extend exergy analysis; Municipal solid waste; Sustainability assessment; Urban metabolism; Labor exergy; Environmental remediation exergy;

    机译:延伸出漏洞分析;市政固体废物;可持续发展评估;城市新陈代谢;劳动力;环境修复驱逐出境;

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