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机械升级再造:碳纤维增强聚对苯二甲酸乙二酯-聚丙烯不相容共混物

Mechanical Upcycling Immiscible Polyethylene Terephthalate-Polypropylene Blends with Carbon Fiber Reinforcement.

作者信息

Gaduan Andre N, Singkronart Kanjanawadee, Bell Catriona, Tierney Emma, Burgstaller Christoph, Lee Koon-Yang

机构信息

Department of Aeronautics, Imperial College London, South Kensington Campus, SW7 2AZ London, United Kingdom.

School of Engineering, Brown University, Providence, Rhode Island 02912, United States.

出版信息

ACS Appl Polym Mater. 2022 May 13;4(5):3294-3303. doi: 10.1021/acsapm.1c01850. Epub 2022 Apr 6.

Abstract

Ineffective sorting of post-consumer plastics remains one of the major obstacles in the recycling of plastics. Consequently, these highly heterogeneous, mixed post-consumer plastics will end up in landfill or have to be incinerated as repurposing them directly would lead to a polymer blend with inferior quality for many end-uses. In this work, we demonstrate the use of carbon fibers (CFs) to practically upgrade the mechanical properties of mixed plastics, adding value to them. This will create a stronger demand for mixed plastics to be used in various engineering applications. Using polyethylene terephthalate (PET) and polypropylene (PP) as the model immiscible polymer blend, we showed that the incorporation of CFs increased the tensile, flexural, and single-edge notched fracture toughness of the resulting CF-reinforced PET/PP composite blends. Despite the high environmental burden associated with the production of CFs, cradle-to-grave life-cycle analysis showed that CF-reinforced PET/PP composites have a lower environmental impact than the life-cycle scenarios of "doing nothing" and repurposing immiscible PET/PP blends as it is without CF reinforcement. This can be attributed to the weight saving achieved, a direct result of their higher mechanical performance. Our work opens up opportunities for the use of mixed plastics in various higher value applications such that they can be diverted away from landfill or incineration, in line with the concept of circular economy.

摘要

消费后塑料的低效分类仍然是塑料回收利用的主要障碍之一。因此,这些高度异质的混合消费后塑料最终将被填埋或不得不被焚烧,因为直接对它们进行再利用会导致聚合物共混物在许多最终用途中质量较差。在这项工作中,我们展示了使用碳纤维(CFs)切实提升混合塑料的机械性能,为它们增加价值。这将为混合塑料在各种工程应用中创造更强劲的需求。以聚对苯二甲酸乙二酯(PET)和聚丙烯(PP)作为典型的不相容聚合物共混物,我们表明,加入碳纤维提高了所得碳纤维增强PET/PP复合共混物的拉伸、弯曲和单边缺口断裂韧性。尽管碳纤维生产带来了较高的环境负担,但从摇篮到坟墓的生命周期分析表明,碳纤维增强PET/PP复合材料的环境影响低于“不作为”以及将不相容的PET/PP共混物直接再利用(即不进行碳纤维增强)的生命周期情景。这可归因于所实现的重量减轻,这是其较高机械性能的直接结果。我们的工作为混合塑料在各种更高价值应用中的使用开辟了机会,从而使它们能够根据循环经济的理念从填埋或焚烧中转移出来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7658/9112279/5c3329315451/ap1c01850_0002.jpg

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