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首页> 外文期刊>Polymer Degradation and Stability >Renewable resource-based composites of recycled natural fibers and maleated polylactide bioplastic: Characterization and biodegradability
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Renewable resource-based composites of recycled natural fibers and maleated polylactide bioplastic: Characterization and biodegradability

机译:再生天然纤维和马来酸化聚乳酸生物塑料的可再生资源基复合材料:表征和生物降解性

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摘要

The thermal properties of composite materials composed of polylactide (PLA) and green coconut fiber (GCF) were evaluated. Blends containing maleic anhydride-grafted PLA (PLA-g-MA/GCF) exhibited noticeably superior thermal properties due to greater compatibility between the two components. The dispersion of GCF in the PLA-g-MA matrix was highly homogeneous as a result of ester formation, and the consequent creation of branched and cross-linked macromolecules, between the carboxyl groups of PLA-g-MA and the hydroxyl groups in GCF. In addition, the PLA-g-MA/GCF blend was more easily processed due to a lower melt viscosity. Each composite was subject to biodegradation tests in a Burkholderia cepacia BCRC 14253 compost. The bacterium completely degraded both the PLA and the PLA-g-MA/GCF composite films. Morphological observations indicated severe disruption of the film structure after 9-12 days of incubation. The PLA-g-MA/GCF (10 wt%) films were not only more biodegradable than those made of PLA, but also exhibited lower molecular weight and intrinsic viscosity, implying a strong connection between these characteristics and biodegradability.
机译:评价了由聚丙交酯(PLA)和绿色椰子纤维(GCF)组成的复合材料的热性能。含有马来酸酐接枝的PLA(PLA-g-MA / GCF)的共混物由于两种组分之间的相容性更好,因此表现出优异的热性能。 GCF在PLA-g-MA基质中的分散是高度均匀的,这是由于形成了酯,以及在PLA-g-MA的羧基和GCF中的羟基之间产生了支链和交联的大分子。另外,由于较低的熔体粘度,PLA-g-MA / GCF共混物更容易加工。每种复合物均在洋葱伯克霍尔德氏菌BCRC 14253堆肥中进行生物降解测试。细菌完全降解了PLA和PLA-g-MA / GCF复合膜。形态学观察表明,温育9-12天后膜结构严重破坏。 PLA-g-MA / GCF(10 wt%)膜不仅比PLA膜具有更高的生物降解性,而且分子量和特性粘度也较低,这意味着这些特性与生物降解性之间有很强的联系。

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