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Bio-Polyethylene (Bio-PE) Bio-Polypropylene (Bio-PP) and Bio-Poly(ethylene terephthalate) (Bio-PET): Recent Developments in Bio-Based Polymers Analogous to Petroleum-Derived Ones for Packaging and Engineering Applications

机译:生物聚乙烯(BIO-PE)生物聚丙烯(BIO-PP)和生物聚(Bio-PET)(Bio-PET):基于生物基聚合物的最新发育类似于用于包装和工程应用的石油衍生的聚合物

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摘要

In recent year, there has been increasing concern about the growing amount of plastic waste coming from daily life. Different kinds of synthetic plastics are currently used for an extensive range of needs, but in order to reduce the impact of petroleum-based plastics and material waste, considerable attention has been focused on “green” plastics. In this paper, we present a broad review on the advances in the research and development of bio-based polymers analogous to petroleum-derived ones. The main interest for the development of bio-based materials is the strong public concern about waste, pollution and carbon footprint. The sustainability of those polymers, for general and specific applications, is driven by the great progress in the processing technologies that refine biomass feedstocks in order to obtain bio-based monomers that are used as building blocks. At the same time, thanks to the industrial progress, it is possible to obtain more versatile and specific chemical structures in order to synthetize polymers with ad-hoc tailored properties and functionalities, with engineering applications that include packaging but also durable and electronic goods. In particular, three types of polymers were described in this review: Bio-polyethylene (Bio-PE), bio-polypropylene (Bio-PP) and Bio-poly(ethylene terephthalate) (Bio-PET). The recent advances in their development in terms of processing technologies, product development and applications, as well as their advantages and disadvantages, are reported.
机译:近年来,对来自日常生活的塑料废物越来越多地越来越担心。不同种类的合成塑料目前用于广泛的需求,但为了降低基于石油的塑料和材料浪费的影响,较为广泛的关注是集中在“绿色”塑料上。在本文中,我们对类似于石油衍生的聚合物的研究和开发的进展进行了广泛的审查。生物基础材料发展的主要兴趣是对废物,污染和碳足迹的强烈公众关注。对于一般和特定应用,这些聚合物的可持续性是通过细化生物质原料的加工技术的巨大进展来驱动,以获得用作构建块的生物基单体。与此同时,由于工业进步,可以获得更通用的和特定的化学结构,以合成具有ad-hoc定制性能和功能的聚合物,其中工程应用包括包装,还包括耐用和电子产品。特别地,在本综述中描述了三种类型的聚合物:生物聚乙烯(Bio-PE),生物聚丙烯(Bio-PP)和生物聚(乙二醇)(Bio-PET)。据报道了最近在加工技术,产品开发和应用以及其优缺点方面发展的最新进展。

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