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Quantifying the environmental impact of clustering strategies in waste management: A case study for plastic recycling from large household appliances

机译:量化集群策略对废物管理中的环境影响 - 以大型家用电器塑料回收案例研究

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摘要

The complex composition of waste electrical and electronic equipment (WEEE) plastics represents a challenge during post-consumption plastic recycling. A single WEEE category, e.g. large household appliances (LHA), can contain several different plastic types with overlapping material properties, making the sorting of individual plastics a challenge. Significant increases in plastic recovery rates can be expected by clustering product categories, as clustering can avoid mixing of non-compatible plastics with overlapping material properties. For this purpose, a life cycle assessment (LCA) is conducted to investigate the influence of different clustering strategies on the environmental performance of waste treatment and the production of recycled plastic from LHA waste stream. To assure comparability between waste treatment scenarios a system expansion approach is applied, and to allocate the burden of shared processes over the first and second use cycle of the material partitioning is applied. Results show that an increased separation of product clusters by plastic type can improve the plastic recovery rate from 5.8% to 47.1% and reduce the overall environmental impact, quantified with the ReCiPe (2016) method, by up to 23%. The environmental impacts of using recycled plastics from LHA waste can be reduced by 27 to 38% compared to single-use plastic. The holistic approach used in this study demonstrates (1) the potential benefits of implementing product clustering strategies for LHA plastic recycling, (2) the relevance of different allocation procedures when integrating recycling into an LCA, (3) the importance of using less virgin material and avoiding final waste treatment, and (4) the limitation of the recycling system to reduce the environmental burden associated with products.
机译:废电气和电子设备(WEEE)塑料的复杂组成代表消耗后塑料回收过程中的挑战。单个WEEE类别,例如大型家用电器(LHA),可含有几种不同的塑料类型,具有重叠材料的性质,使个人塑料分类是一个挑战。通过聚类产品类别可以预期塑料回收率的显着增加,因为聚类可以避免使用重叠材料性能的不兼容塑料混合。为此目的,进行生命周期评估(LCA)以调查不同聚类策略对废物处理环境绩效的影响,以及从LHA废物流的再生塑料的生产。为了确保废物处理场景之间的可比性,应用系统扩展方法,并应用了应用材料分区的第一和第二使用周期上的共享过程的负担。结果表明,塑料型产品簇的分离增加可以将塑料回收率从5.8%提高至47.1%,并降低整体环境影响,用配方(2016)方法量化,高达23%。与单用塑料相比,使用LHA废物中使用再循环塑料的环境影响可以减少27%至38%。本研究中使用的整体方法证明了(1)实施LHA塑料回收的产品聚类策略的潜在好处,(2)在将回收到LCA中纳入LCA时,不同分配程序的相关性,(3)使用更少的原始材料的重要性并避免最终废物处理,并(4)限制回收系统,以减少与产品相关的环境负担。

著录项

  • 来源
    《Waste Management》 |2021年第5期|497-507|共11页
  • 作者单位

    KU Leuven Departement of Mechanical Engineering Celestijnenlaan 300A Box 2422 3001 Leuven Belgium;

    Fraunhofer Institute for Reliability and Microintegration IZM Gustav-Meyer-Allee 25 13355 Berlin Germany;

    Fraunhofer Institute for Reliability and Microintegration IZM Gustav-Meyer-Allee 25 13355 Berlin Germany TU Berlin Reseach Center for Microperipheric Technologies Gustav-Meyer-Allee 25 13355 Berlin Germany;

    KU Leuven Departement of Mechanical Engineering Celestijnenlaan 300A Box 2422 3001 Leuven Belgium;

    KU Leuven Departement of Mechanical Engineering Celestijnenlaan 300A Box 2422 3001 Leuven Belgium;

    KU Leuven Departement of Mechanical Engineering Celestijnenlaan 300A Box 2422 3001 Leuven Belgium;

    KU Leuven Departement of Mechanical Engineering Celestijnenlaan 300A Box 2422 3001 Leuven Belgium Flanders Make Gaston Geenslaan 8 3001 Heverlee Belgium;

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

    Life cycle assessment; Environmental impacts; Plastic recycling; Waste electrical and electronic equipment;

    机译:生命周期评估;环境影响;塑料回收;废电气和电子设备;

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