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首页> 外文期刊>The Science of the Total Environment >Implementing Circular Economy in municipal solid waste treatment system using P-graph
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Implementing Circular Economy in municipal solid waste treatment system using P-graph

机译:利用P-graph在城市生活垃圾处理系统中实施循环经济

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Municipal solid waste (MSW) is one of the issues associated with the growth of economic and urban population. The aim of this study is to develop an integrated design of waste management systems in support of a Circular Economy by P-graph (a bipartite graphical optimisation tool) as an effective decision support tool. The case study considers four MSW compositions based on different country income levels. Solving the P-graph model identifies the most suitable treatment approaches, considering the economic balance between the main operating cost, type, yield, quality of products, as well as the GHG emission (externality cost). The identification of near-optimal solutions by P-graph is useful in dealing with the trade-offs between conflicting objectives, e.g. local policy and practical implementation, that are difficult to monetise. For a lower-income country, the optimal solution includes a combination of at source separation, recycling, incineration (heat, electricity), anaerobic digestion (biofuel, digestate) and the landfill. It avoids an estimated 411 kg CO2eq/t of processed MSW and achieves a potential profit of 42 SIC/t of processed MSW. The optimisation generally favours mechanical biological treatment as the country income level rises, which affects the composition of the MSW. The relative prices of biofuel, electricity and heat (>20%) cause a significant impact on the highest-ranking treatment structure and overall profit. This study shows that the developed framework by P-graph is an effective tool for MSW systems planning. For future study, localised data inputs can be fed into the proposed framework for a customised solution and economic feasibility assessment. (C) 2019 Elsevier B.V. All rights reserved.
机译:城市固体废物(MSW)是与经济和城市人口增长相关的问题之一。这项研究的目的是开发一种废物管理系统的集成设计,以通过P-graph(一种双向图形优化工具)作为一种有效的决策支持工具来支持循环经济。案例研究根据不同国家的收入水平考虑了四种城市生活垃圾组成。考虑到主要运营成本,类型,产量,产品质量以及温室气体排放量(外部性成本)之间的经济平衡,对P-graph模型的求解确定了最合适的处理方法。通过P-graph识别近乎最佳的解决方案对于处理冲突目标之间的权衡是有用的,例如难以货币化的本地政策和实际执行情况。对于低收入国家,最佳解决方案包括源头分离,回收,焚化(热,电),厌氧消化(生物燃料,消化物)和垃圾填埋场的组合。它避免了估计的411千克CO2eq / t的处理后城市生活垃圾,并实现了42 SIC / t的处理后城市生活垃圾潜在利润。随着国家收入水平的提高,这种优化通常有利于机械生物处理,这会影响城市生活垃圾的构成。生物燃料,电力和热能的相对价格(> 20%)对最高级的处理结构和整体利润产生重大影响。这项研究表明,通过P-graph开发的框架是用于MSW系统规划的有效工具。为了将来的研究,可以将本地化数据输入输入到提议的框架中,以进行定制的解决方案和经济可行性评估。 (C)2019 Elsevier B.V.保留所有权利。

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