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Towards a more circular economy for WEEE plastics - Part B: Assessment of the technical feasibility of recycling strategies

机译:面向WEEE塑料的更循环经济-B部分:评估回收策略的技术可行性

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摘要

This two paper series describes a method to develop and evaluate new recycling strategies for WEEE plastics. Part A presents a SWOT analysis that leads to five recycling strategies for the optimal integration of new dismantling based recycling processes for plastic components in an established post-shredder separation infrastructure. In this paper the technical feasibility of the strategies is demonstrated by means of LCD TV back cover housings. The component recycling is shown to produce recycled PC/ABS with phosphorous flame retardants suitable for direct re-application in electronic products. The high quality is characterized by a good mechanical and aesthetical properties as well as a recovered flammability. HIPS with brominated flame retardants was recycled to produce masterbatches. The technical feasibility of this strategy was proven by mechanical and flammability testing. However, the presence of deca-BDE requires this material to be incinerated. A combination of EU legislation research and forecasting shows that the origin of this flame retardant are TV models produced before 2008 and restricted concentrations still need to be expected for decades to come. Further, a blending strategy of HIPS/PPE is shown to improve the mechanical properties of post-shredder recycled HIPS. The evaluation of refeeding ABS/PMMA into the post-shredder recycling process of ABS indicates only partial compatibility. Further, complications due to density differences make this strategy more suitable for polymers that are already commercially recycled such as ABS and HIPS. Colour is identified as a key requirements that limits the use of WEEE plastics in high-quality products. (C) 2019 Elsevier Ltd. All rights reserved.
机译:这两个系列文章介绍了一种开发和评估WEEE塑料新回收策略的方法。 A部分提供了SWOT分析,得出了五种回收策略,以在现有的切碎机分离基础设施中以最佳方式整合新的基于拆解的塑料组件回收工艺。本文通过液晶电视后盖的外壳展示了该策略的技术可行性。零件回收表明可以生产出含磷阻燃剂的回收PC / ABS,适用于直接在电子产品中重新使用。高质量的特征在于良好的机械和美学特性以及可恢复的可燃性。含溴阻燃剂的HIPS被回收以生产母料。机械和可燃性测试证明了该策略的技术可行性。但是,十溴联苯醚的存在要求将这种物质焚化。欧盟立法研究和预测的结合表明,这种阻燃剂的来源是2008年之前生产的电视型号,在未来几十年内仍需要限制浓度。此外,已显示出HIPS / PPE的混合策略可改善粉碎后回收的HIPS的机械性能。对将ABS / PMMA重新送入ABS的粉碎机回收后过程的评估表明,仅存在部分相容性。此外,由于密度差异引起的复杂性使该策略更适用于已经商业回收的聚合物,例如ABS和HIPS。颜色被认为是限制WEEE塑料在高质量产品中使用的关键要求。 (C)2019 Elsevier Ltd.保留所有权利。

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  • 来源
    《Waste Management》 |2019年第8期|206-214|共9页
  • 作者单位

    KU Leuven Univ Leuven, Dept Mech Engn, Leuven, Belgium|KU Leuven Univ Leuven, Dept Chem Engn, Diepenbeek, Belgium;

    KU Leuven Univ Leuven, Dept Mech Engn, Leuven, Belgium;

    KU Leuven Univ Leuven, Dept Chem Engn, Diepenbeek, Belgium;

    Campine NV, Beerse, Belgium;

    KU Leuven Univ Leuven, Dept Mech Engn, Leuven, Belgium;

    KU Leuven Univ Leuven, Dept Mech Engn, Leuven, Belgium;

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