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Dynamic Material Flow Analysis of PET, PE, and PP Flows in Europe: Evaluation of the Potential for Circular Economy

机译:欧洲PET,PE和PP流动的动态材料流量分析:循环经济潜力的评价

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摘要

This study evaluates the potential circularity of PET, PE, and PP flows in Europe based on dynamic material flow analysis (MFA), considering product lifetimes, demand growth rates, and quality reductions of recycled plastic (downcycling). The circularity was evaluated on a baseline scenario, representing 2016 conditions, and on prospective scenarios representing key circularity enhancing initiatives, including (ⅰ) maintaining constant plastic consumption, (ⅱ) managing waste plastic exports in the EU, (ⅲ) design-for-recycling initiatives, (ⅳ) improved collection, and (ⅴ) improved recovery and reprocessing. Low recycling rates (RR, 13-20%) and dependence on virgin plastic, representing 85-90% of the annual plastic demand, were demonstrated after 50 years in the baseline. Limited improvements were related to the individual scenarios, insufficient to meet existing recycling targets. However, by combining initiatives, RRs above 55%, where 75-90% was recycled in a closed loop, were demonstrated. Moreover, 40-65% of the annual demand could potentially be covered by recycled plastic. Maintaining a constant plastic demand over time was crucial in order to reduce the absolute dependence on virgin plastic, which was not reflected by the RR. Thus, focusing strictly on RRs and even whether and to which extent virgin material is substituted, is insufficient for evaluating the transition toward circularity, which cannot be achieved by technology improvements alone-the demand must also be stabilized.
机译:本研究根据动态材料流量分析(MFA),评估欧洲PET,PE和PP流动的潜在圆形度,考虑产品寿命,需求增长率和再循环塑料(淡水)的质量减少。在基线情景中评估循环,代表2016条件,以及代表关键圆形增强举措的预期情景,包括(Ⅰ)维持恒定的塑料消耗,(Ⅱ)管理欧盟的废物塑料出口,(Ⅲ)设计 - 回收举措,(ⅳ)改进的收集,(ⅴ)改善恢复和再处理。低收回率(RR,13-20%)和依赖处女塑料的依赖性,在基线50年后展示了年度塑料需求的85-90%。有限的改进与个人情景有关,不足以满足现有的回收目标。然而,通过将举措结合,RRS高于55%,其中75-90%在闭环中再循环,被证明。此外,40-65%的年度需求可能会被回收的塑料覆盖。保持恒定的塑性需求随着时间的推移是至关重要的,以减少对Virgin塑料的绝对依赖性,该塑料不会被RR反射。因此,严格地关注RRS,甚至在替代程度处的程度替代的程度,不足以评估朝向圆形的过渡,这不能通过技术改进来实现 - 需求也必须稳定。

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  • 来源
    《Environmental Science & Technology》 |2020年第24期|16166-16175|共10页
  • 作者单位

    Department of Environmental Engineering Technical University of Denmark 2800 Kgs. Lyngby Denmark;

    Department of Environmental Engineering Technical University of Denmark 2800 Kgs. Lyngby Denmark;

    European Commission Joint Research Centre E-41092 Sevilla Spain;

    Department of Environmental Engineering Technical University of Denmark 2800 Kgs. Lyngby Denmark;

    Department of Environmental Engineering Technical University of Denmark 2800 Kgs. Lyngby Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 23:02:47

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