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How to enhance the environmental sustainability of WEEE plastics management: An LCA study

机译:如何提升WEEE塑料管理的环境可持续性:LCA研究

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摘要

A new management scheme of plastics from waste of electrical and electronic equipment (WEEE), which includes novel treatments of sorting, dissolution/precipitation, extrusion, catalytic pyrolysis, and plastic upgrading, is proposed. Its environmental performances are quantified by an attributional Life Cycle Assessment and compared with those of European currently adopted schemes, which include conventional mechanical recycling and thermal treatments as well as improper options of dumping and open burning, largely applied to WEEE plastics exported to developing countries. The proposed innovative scheme greatly enhances the environmental sustainability of WEEE plastics management, by increasing the annual amounts of polymers sent to recycling (from 390 kt/y up to 530 kt/y), decreasing residues to be sent to combustion (from 360 kt/y up to 60 kt/y), and reducing the potential impacts of all the midpoint categories under analysis (up to 580% for that of Global Warming). These results are mainly related to the adoption of a dissolution/precipitation process, which allows recovering target polymers such as ABS, HIPS and PC, with improvements in terms of Global Warming, Non-Carcinogens, and Carcinogens equal to 246%, 69% and 35%, even when the stages of polymer upgrading and catalytic pyrolysis are not included in the analysis. The sensitivity analysis shows that advantages of the new approach substantially disappear if the awful contributions of exportation outside Europe are taken into account. This clearly indicates that the first step to enhance the sustainability of WEEE plastics management is a strong limitation of improper treatments applied to exported wastes.
机译:提出了一种来自浪费电气和电子设备(WEEE)的塑料的新管理方案,包括分类,溶出/沉淀,挤出,催化热解和塑料升级的新型处理。 Its environmental performances are quantified by an attributional Life Cycle Assessment and compared with those of European currently adopted schemes, which include conventional mechanical recycling and thermal treatments as well as improper options of dumping and open burning, largely applied to WEEE plastics exported to developing countries.拟议的创新方案大大提高了WEEE塑料管理的环境可持续性,通过增加送到回收的聚合物(从390 kt / y达530 kt / y),减少待燃烧的残留物(从360 kt / y最多60 kt / y),并降低了分析下所有中点类别的潜在影响(全球变暖的高达580%)。这些结果主要与采用溶出/沉淀过程有关,这允许在全球变暖,非致癌物质和致癌剂等方面恢复诸如ABS,HIPS和PC等靶聚合物,例如相当于246%,69%的致癌物质即使在分析中不包括聚合物升级和催化热解的阶段,即使在分析中的阶段也不包含。敏感性分析表明,如果欧洲境外出口贡献,新方法的优势显着消失。这清楚地表明,加强WEEE塑料管理可持续性的第一步是对出口废物的不当治疗的强烈限制。

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