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Consequential lifecycle modelling of solid waste management systems - Reviewing choices and exploring their consequences

机译:固体废物管理系统的结果生命周期建模-审查选择并探索其后果

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Application of consequential lifecycle assessment modelling has gained increased interest in the area of solid waste management. In such assessments, identification of affected technologies and choices of system boundary setting are of key importance. With the aim of investigating how previous consequential lifecycle assessments of solid waste management systems have tackled these issues, a review was performed of 36 previously published studies. The intention is to contribute to improved understanding of the challenges of performing consequential lifecycle inventory modelling of solid waste management systems, which could facilitate future studies. Results demonstrate a strong relation between the selection of affected energy production technology and overall GHG-emissions. In general, assuming that energy provision from less polluting technologies is affected by studied changes will commonly discredit waste-to-energy technologies and promote material recycling. However, made choices were also in many cases not justified. Materials substituted by waste derived goods are frequently represented by average data. The detected inconsistency in how energy provision and material provision are modelled could result in biased results, and care should be taken to minimize this risk. Four aspects are identified where current practice in system boundary setting choices is diverse and where those choices could have significant influence on overall results; counterfactual waste management, fate of materials avoided through material recycling, cascading effects and rebound effects. This paper argues that there is a need for increased transparency and coherence in identification of affected processes/technologies, as well as for a broader approach in system boundary setting, if studies have the aim of serving as relevant input for decision makers. (C) 2018 Elsevier Ltd. All rights reserved.
机译:结果性生命周期评估模型的应用在固体废物管理领域引起了越来越多的兴趣。在此类评估中,识别受影响的技术和选择系统边界设置至关重要。为了调查先前对固体废物管理系统进行的相应生命周期评估如何解决这些问题,对以前发表的36项研究进行了回顾。目的是帮助人们更好地理解对固体废物管理系统进行相应的生命周期清单建模所面临的挑战,这可能有助于将来的研究。结果表明,受影响的能源生产技术的选择与温室气体总体排放之间存在密切关系。通常,假设污染较少的技术所提供的能源会受到研究变化的影响,通常会抹煞废物转化为能源的技术,并促进材料的回收利用。但是,在许多情况下做出选择也是没有道理的。用废品替代的材料通常用平均数据表示。在能源供应和材料供应建模方面发现的不一致之处可能会导致结果有偏差,应注意将这种风险降至最低。确定了四个方面,其中当前系统边界设置选择的实践是多种多样的,这些选择可能会对总体结果产生重大影响;反事实废物管理,通过材料回收,级联效应和回弹效应避免了材料的命运。本文认为,如果研究的目的是作为决策者的相关投入,则需要在确定受影响的过程/技术方面提高透明度和连贯性,以及在系统边界设置中采用更广泛的方法。 (C)2018 Elsevier Ltd.保留所有权利。

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