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The Recent Developments in Biobased Polymers toward General and Engineering Applications: Polymers that Are Upgraded from Biodegradable Polymers Analogous to Petroleum-Derived Polymers and Newly Developed

机译:生物基聚合物在一般和工程应用方面的最新发展:从可生物降解的聚合物类似于石油衍生的聚合物升级而来的聚合物以及新开发的聚合物

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摘要

The main motivation for development of biobased polymers was their biodegradability, which is becoming important due to strong public concern about waste. Reflecting recent changes in the polymer industry, the sustainability of biobased polymers allows them to be used for general and engineering applications. This expansion is driven by the remarkable progress in the processes for refining biomass feedstocks to produce biobased building blocks that allow biobased polymers to have more versatile and adaptable polymer chemical structures and to achieve target properties and functionalities. In this review, biobased polymers are categorized as those that are: (1) upgrades from biodegradable polylactides (PLA), polyhydroxyalkanoates (PHAs), and others; (2) analogous to petroleum-derived polymers such as bio-poly(ethylene terephthalate) (bio-PET); and (3) new biobased polymers such as poly(ethylene 2,5-furandicarboxylate) (PEF). The recent developments and progresses concerning biobased polymers are described, and important technical aspects of those polymers are introduced. Additionally, the recent scientific achievements regarding high-spec engineering-grade biobased polymers are presented.
机译:开发生物基聚合物的主要动机是其生物降解性,由于公众对废物的强烈关注,生物降解性变得越来越重要。由于反映了聚合物行业的最新变化,生物基聚合物的可持续性使其可以用于一般和工程应用。这种扩展是由在提炼生物质原料以生产生物基构件的过程中取得的显着进步推动的,生物基构件使生物基聚合物具有更多用途和适应性的聚合物化学结构并实现目标特性和功能。在本综述中,基于生物的聚合物可归类为:(1)从可生物降解的聚丙交酯(PLA),聚羟基链烷酸酯(PHA)等产品的升级版; (2)类似于石油衍生的聚合物,例如生物聚对苯二甲酸乙二酯(bio-PET); (3)新的生物基聚合物,例如聚2,5-呋喃二甲酸乙烯酯(PEF)。描述了有关生物基聚合物的最新进展和进展,并介绍了这些聚合物的重要技术方面。此外,还介绍了有关高规格工程级生物基聚合物的最新科学成就。

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