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首页> 外文期刊>Journal of Applied Polymer Science >Polyester biocomposites from recycled natural fibers: Characterization and biodegradability
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Polyester biocomposites from recycled natural fibers: Characterization and biodegradability

机译:回收天然纤维制成的聚酯生物复合材料:表征和生物降解性

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摘要

The structure, biodegradability, and morphological properties of composite materials composed of poly(butylene succinate adipate) (PBSA) and bamboo fiber (BF) were evaluated. Composites containing acrylic acid-grafted PBSA (PBSA-g-AA/BF) exhibited noticeably enhanced compatibility between the two components. The dispersion of BF in the PBSA-g-AA matrix was highly homogeneous as a result of ester formation and the consequent creation of branched and crosslinked macromolecules between the carboxyl groups of PBSA-g-AA and hydroxyl groups in BF. In addition, the PBSA-g-AA/BF composite was more easily processed due to a lower melt viscosity. Each composite was subjected to biodegradation tests in an Acinetobacter baumannii compost. Morphological observations indicated severe disruption of film structure after 10-20 days of incubation, and both the PBSA and the PBSA-g-AA/BF composite films were eventually completely degraded. The PBSA-g-AA/BF films were more biodegradable than those made of PBSA and exhibited a lower molecular weight and intrinsic viscosity, implying a strong connection between these characteristics and biodegradability.
机译:评价了聚己二酸丁二酸丁二酯(PBSA)和竹纤维(BF)组成的复合材料的结构,生物降解性和形态学性能。含有丙烯酸接枝的PBSA(PBSA-g-AA / BF)的复合材料在两种组分之间的相容性显着提高。 BF在PBSA-g-AA基质中的分散是高度均匀的,这是由于形成了酯并因此在PBSA-g-AA的羧基和BF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,更容易加工PBSA-g-AA / BF复合材料。将每种复合物在鲍曼不动杆菌堆肥中进行生物降解测试。形态学观察表明,在孵育10-20天后,膜结构受到严重破坏,并且PBSA和PBSA-g-AA / BF复合膜均最终完全降解。 PBSA-g-AA / BF薄膜比PBSA薄膜具有更高的生物降解性,并具有较低的分子量和特性粘度,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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