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从废塑料到工业原料:基于实际案例研究的机械塑料回收实践生命周期评估。

From waste plastics to industrial raw materials: A life cycle assessment of mechanical plastic recycling practice based on a real-world case study.

机构信息

Department of Chemical and Environmental Engineering, Nottingham University, Ningbo 315100, China.

Center of Energy and Environmental Policy Research, Institute of Policy and Management, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

Sci Total Environ. 2017 Dec 1;601-602:1192-1207. doi: 10.1016/j.scitotenv.2017.05.278. Epub 2017 Jun 9.

Abstract

Mechanical recycling of waste plastics is an environmental solution to the problem of waste plastic disposal, and has already become a common practice in industry. However, limited information can be found on either the industralised plastic recycling or the recycled materials, despite the use of recycled plastics has already extended to automobile production. This study investigates the life cycle environmental impacts of mechanical plastic recycling practice of a plastic recycling company in China. Waste plastics from various sources, such as agricultural wastes, plastic product manufacturers, collected solid plastic wastes and parts dismantled from waste electric and electronic equipments, are processed in three routes with products end up in different markets. The results of life cycle assessments show that the extrusion process has the largest environmental impacts, followed by the use of fillers and additives. Compared to production of virgin plastics and composites, the mechanical recycling is proved to be a superior alternative in most environmental aspects. Substituting virgin plastic composites with recycled plastic composites has achieved the highest environmental benefits, as virgin composite production has an impact almost 4 times higher that of the recycled composite production in each ReCiPe endpoint damage factor. Sensitivity analysis shows that the coverage of collecting network contribute affect little to overall environmental impact, and centralisation plays an important role in reducing overall environmental impacts. Among the fillers and additives, impact modifiers account for the most significant contributions to the environmental impacts of recycled composites. This study provides necessary information about the existing industrialised plastic recycling practice, and recommendations are given. Research implications are presented with the purpose to achieve higher substitution rate and lower environmental impact.

摘要

废旧塑料的机械回收是解决废旧塑料处理问题的一种环境解决方案,已经在工业中得到广泛应用。然而,尽管回收塑料已经应用于汽车生产,但关于工业化塑料回收或回收材料的信息却有限。本研究调查了中国一家塑料回收公司机械塑料回收实践的生命周期环境影响。废物塑料来自各种来源,如农业废物、塑料产品制造商、收集的固体塑料废物和从废弃电子电气设备中拆卸的部件,通过三种路线进行加工,产品最终进入不同的市场。生命周期评估的结果表明,挤出工艺对环境的影响最大,其次是填充剂和添加剂的使用。与原生塑料和复合材料的生产相比,机械回收在大多数环境方面被证明是一种更好的替代方案。用回收塑料复合材料替代原生塑料复合材料可以实现最高的环境效益,因为在每个 ReCiPe 终点损害因素中,原生复合材料的生产对环境的影响几乎是回收复合材料生产的 4 倍。敏感性分析表明,收集网络的覆盖范围对整体环境影响的影响很小,而集中化在降低整体环境影响方面起着重要作用。在填充剂和添加剂中,增韧剂对回收复合材料的环境影响贡献最大。本研究提供了有关现有工业化塑料回收实践的必要信息,并提出了建议。研究意义在于实现更高的替代率和更低的环境影响。

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