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Integrating High-Resolution Material Flow Data into the Environmental Assessment of Waste Management System Scenarios: The Case of Plastic Packaging in Austria

机译:将高分辨率物料流数据集成到废物管理系统方案的环境评估中:奥地利的塑料包装案例

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摘要

The environmental performance of the waste management system of plastic packaging in Austria was assessed using a combination of high-resolution material flows and input-dependent life cycle inventory data. These data were used to evaluate different configurations of the waste management system, reflecting the system structure as it was in 1994 in Austria and still is in some of the new EU member states, as well as a situation achieving the increased circular economy targets to be met by 2030. For the latter, two options, namely single-polymer recycling and mixed-polymer recycling, were investigated. The results showed that the status quo achieves net benefits for 15 out of 16 impact categories evaluated. Regarding the alternative scenarios, for most impact categories these benefits increased with increasing recycling rates, although for four impact categories the highest net benefit was achieved by the status quo. For many impact categories the marginal environmental benefit decreased at higher recycling rates, indicating that there is an environmentally optimal recycling rate below 100%. The results also highlight the importance of high-quality single-polymer plastics recycling from an environmental perspective because utilizing mixed polymer recycling to achieve circular economy targets would result in lower environmental benefits than the status quo.
机译:奥地利的塑料包装废物管理系统的环境绩效是结合高分辨率材料流和依赖于输入的生命周期清单数据进行评估的。这些数据用于评估废物管理系统的不同配置,反映了该系统的结构(1994年在奥地利,现在仍在某些欧盟新成员国中),以及实现了增加的循环经济目标的情况。到2030年实现。对于后者,研究了两种选择,即单聚合物回收和混合聚合物回收。结果表明,在评估的16种影响类别中,有15种的现状达到了净收益。关于替代方案,对于大多数影响类别,这些收益随着回收率的增加而增加,尽管对于四个影响类别,现状是实现了最高的净收益。对于许多影响类别,边际环境收益在较高的回收率下会下降,这表明低于100%的环境最优回收率。从环境的角度来看,结果也突出了高质量单聚合物塑料回收的重要性,因为利用混合聚合物回收来实现循环经济目标会导致环境效益低于现状。

著录项

  • 来源
    《Environmental Science & Technology》 |2018年第19期|10934-10945|共12页
  • 作者单位

    TU Wien, Christian Doppler Lab Anthropogen Resources, Karlspl 13-226, A-1040 Vienna, Austria;

    TU Wien, Christian Doppler Lab Anthropogen Resources, Karlspl 13-226, A-1040 Vienna, Austria;

    TU Wien, Christian Doppler Lab Anthropogen Resources, Karlspl 13-226, A-1040 Vienna, Austria;

  • 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
  • 关键词

  • 入库时间 2022-08-18 03:58:38

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