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Plastic recycling in a circular economy; determining environmental performance through an LCA matrix model approach

机译:循环经济中的塑料回收;通过LCA矩阵模型方法确定环境性能

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摘要

To ensure a circular economy for plastics, insights in the environmental impacts of recycling and optimal recycling choices for specific plastic polymers are crucial. This was obtained by determining the environmental performance of 10 selected recycling technologies with varying TRL levels, using the chemical properties of the top 25 produced polymers in Europe. The results were collected in a life cycle assessment (LCA) 'matrix' model. To simulate realistic plastic recycling challenges, case studies of PE/PP foils from municipal waste and ABS plastic with brominated flame retardants were developed, to be used as an addition to the LCA matrix model results. Potential emission reduction was assessed by combining LCA matrix outcomes with European polymer demand data. The LCA matrix model illustrates that potential environmental performance of recycling technologies varied strongly per polymer type and did not always follow the state-of-the-art recycling hierarchy. Commodity plastics performed well with tertiary recycling technologies, such as gasification and pyrolysis to monomers; secondary mechanical recycling was outperformed. A focus on primary recycling is environmentally beneficial for most engineering and high performance plastics. To enhance the performance of primary recycling technologies, a higher purity and improved sorting is required. As demonstrated in the case studies, low sorting efficiencies due to impurities reduces positive environmental impacts. Hence, optimal environmental performance of recycling is obtained where pre-treatment (sorting, cleaning) is adapted to the recycling technology. According to the model, recycling the 15 most demanded polymers in Europe reduces CO_2 emissions from plastics by 73% or 200 Mtonne CO_2 eq.
机译:为确保塑料的循环经济,对特定塑料聚合物的再循环和最佳回收选择的环境影响的见解是至关重要的。这是通过确定具有不同TR1水平的10种选定的回收技术的环境性能来获得,使用欧洲前25个产生的聚合物的化学性质。结果在生命周期评估(LCA)'矩阵'模型中收集。为了模拟现实的塑料回收挑战,开发了由市政废物和ABS塑料的PE / PP箔的案例研究,被开发,用作LCA矩阵模型结果的补充。通过将LCA矩阵结果与欧洲聚合物需求数据组合来评估潜在的减排。 LCA矩阵模型说明了再循环技术的潜在环境性能,每种聚合物类型强烈变化,并且并不总是遵循最先进的回收层次结构。商品塑料对三级回收技术进行了良好,例如气化和单体热解;二次机械回收率优于。对主要回收的关注是对大多数工程和高性能塑料的环境有益。为了增强主要回收技术的性能,需要更高的纯度和改进的分类。如在案例研究中所示,由于杂质引起的低分类效率可降低阳性环境影响。因此,获得回收的最佳环境性能,其中预处理(分选,清洁)适用于回收技术。根据该模型,回收欧洲最多要求的15种聚合物将来自塑料的CO_2排放量减少73%或200毫米CO_2欧元。

著录项

  • 来源
    《Waste Management》 |2021年第2期|331-342|共12页
  • 作者单位

    Netherlands Organization for Applied Scientific Research (TNO) Princetonlaan 8 3584 CB Utrecht the Netherlands;

    Netherlands Organization for Applied Scientific Research (TNO) Princetonlaan 8 3584 CB Utrecht the Netherlands;

    Netherlands Organization for Applied Scientific Research (TNO) Princetonlaan 8 3584 CB Utrecht the Netherlands;

    Netherlands Organization for Applied Scientific Research (TNO) Westerduinweg 3 1755 LE Petten the Netherlands;

    Netherlands Organization for Applied Scientific Research (TNO) Westerduinweg 3 1755 LE Petten the Netherlands;

    Netherlands Organization for Applied Scientific Research (TNO) Princetonlaan 8 3584 CB Utrecht the Netherlands;

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

    Circular economy; Plastics; Waste hierarchy; Life Cycle Assessment; Recycling; Environmental impact;

    机译:循环经济;塑料;浪费层次;生命周期评估;回收;对环境造成的影响;

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