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High molecular weight bio furan-based co-polyesters for food packaging applications: synthesis, characterization and solid-state polymerization

机译:用于食品包装的高分子量生物呋喃基共聚酯:合成,表征和固态聚合

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The goal of this study was to develop ecofriendly bioplastics, which could be applicable in beverage packaging, by synthesizing furan-based co-polyesters and incorporating them into bottles. The furan-based co-polyesters were synthesized by a two-step melt polycondensation reaction using ethylene glycol (EG), 1,4-cyclohexanedimethanol (CHDM), and dimethyl furan dicarboxylate (DM-FDCA). The incorporation of CHDM into the main chain of polymers has been found to increase the chain mobility due to its ring-conformational transition, and it also affects the co-polyesters. The co-polyesters show not only high elongations at break, but also improved Izod impact strengths compared to that of pure poly(ethylene furanoate) (PEF). Despite these characteristics, however, the molecular weights of the co-polyesters were not sufficient for manufacturing purposes. Thus, some samples were further reacted in the solid state by solid state polymerization (SSP) to generate higher-molecular-weight polymers. The crystallization kinetics of the co-polyesters prepared were analyzed to determine the reaction parameters, and the sample whose intrinsic viscosity was greater than 1.0 dL g(-1) was successfully processed into bottles. The bottles prepared had higher O-2-barrier properties and lower acetaldehyde contents than those of commercially available PET bottles. The results obtained so far show that furan-based co-polyesters can be used for food-packaging applications.
机译:这项研究的目的是通过合成基于呋喃的共聚酯并将其掺入瓶中来开发可用于饮料包装的环保生物塑料。通过使用乙二醇(EG),1,4-环己烷二甲醇(CHDM)和呋喃二甲酸二甲酯(DM-FDCA)的两步熔融缩聚反应合成呋喃基共聚酯。已经发现将CHDM掺入聚合物的主链中会由于其环构象转变而增加链的迁移率,并且还影响了共聚酯。与纯聚呋喃乙烯酸酯(PEF)相比,共聚酯不仅显示出高的断裂伸长率,而且还改善了伊佐德冲击强度。尽管具有这些特性,但是共聚酯的分子量不足以用于制造目的。因此,一些样品通过固态聚合(SSP)在固态下进一步反应以生成更高分子量的聚合物。分析了制备的共聚酯的结晶动力学,以确定反应参数,并将特性粘度大于1.0 dL g(-1)的样品成功加工成瓶。与市售PET瓶相比,所制备的瓶具有更高的O-2-阻隔性能和更低的乙醛含量。迄今为止获得的结果表明,呋喃基共聚酯可用于食品包装。

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