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首页> 外文期刊>Journal of Polymers and the Environment >Process, Characterization and Biodegradability of Aliphatic Aromatic Polyester/Sisal Fiber Composites
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Process, Characterization and Biodegradability of Aliphatic Aromatic Polyester/Sisal Fiber Composites

机译:脂肪族芳族聚酯/剑麻纤维复合材料的制备,表征及生物降解性

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摘要

The biodegradability, morphology, and mechanical properties of composite materials made of Poly(butylene adipate-co-terephthalate) (PBAT) and sisal fiber (SF) were evaluated. Composites containing acrylic acid-grafted PBAT (PBAT-g-AA/SF) exhibited noticeably superior mechanical properties due to greater compatibility between the two components. The dispersion of SF in the PBAT-g-AA matrix was highly homogeneous as a result of ester formation between the carboxyl groups of PBAT-g-AA and hydroxyl groups in SF and the consequent creation of branched and cross-linked macromolecules. Each composite was subjected to biodegradation tests in Rhizopus oryzae compost. Morphological observations indicated severe disruption of film structure after 60 days of incubation, and both the PBAT and the PBAT-g-AA/SF composite films were eventually completely degraded. Water resistance of PBAT-g-AA/SF was higher than that of PBAT/SF, although weight loss of composites buried in Rhizopus oryzae compost indicated that both were biodegradable, even at high levels of SF substitution. The PBAT-g-AA/SF films were more biodegradable than those made of PBAT, implying a strong connection between these characteristics and biodegradability.
机译:评价了由聚己二酸丁二酯-对苯二甲酸对苯二甲酸酯(PBAT)和剑麻纤维(SF)制成的复合材料的生物降解性,形态和力学性能。包含丙烯酸接枝的PBAT(PBAT-g-AA / SF)的复合材料由于两种组分之间的相容性更好,因此表现出优异的机械性能。 SF在PBAT-g-AA基质中的分散是高度均匀的,这是由于PBAT-g-AA的羧基与SF中的羟基之间形成了酯,并因此形成了支链和交联的大分子。在米根霉堆肥中对每种复合物进行生物降解测试。形态学观察表明,孵育60天后,膜结构受到严重破坏,PBAT和PBAT-g-AA / SF复合膜最终均被完全降解。尽管掩埋在米根霉堆肥中的复合材料的重量减轻表明,即使在高水平的SF替代下,PBAT-g-AA / SF的耐水性也高于PBAT / SF,但它们的耐水性却更高。 PBAT-g-AA / SF薄膜比PBAT薄膜具有更高的生物降解性,这意味着这些特性与生物降解性之间存在密切的联系。

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