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Characterisation, biodegradability and application of palm fibre-reinforced polyhydroxyalkanoate composites

机译:棕榈纤维增强聚羟基链烷酸酯复合材料的表征,生物降解性和应用

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摘要

The biodegradability, mechanical properties and fabrication of three-dimensional (3D) printing filaments of composite materials made from maleic anhydride-grafted polyhydroxyalkanoate (PHA-g-MA) and coupling agent-treated palm fibre (TPF) were evaluated. Composites of PHA-g-MA and TPF (PHA-g-MA/ TPF) exhibited noticeably superior tensile strength and interfacial adhesion compared with those of PHA/ PF because of a greater compatibility of PHA-g-MA with TPF. The dispersion of TPF in the PHA-g-MA matrix was highly homogeneous as a result of condensation reactions. The water resistance of the PHA-g-MA/TPF membranes was greater than that of the PHA/PF membranes, and a cell viability evaluation with human foreskin fibroblasts (FBs) indicated that both materials were nontoxic. Additionally, the weight loss of composites buried in soil compost indicated that the biodegradation rate can be enhanced with the increase of the PF or TPF content.
机译:评价了由马来酸酐接枝的聚羟基链烷酸酯(PHA-g-MA)和偶联剂处理的棕榈纤维(TPF)制成的复合材料的三维(3D)印刷长丝的生物降解性,力学性能和制备。与PHA / PF相比,PHA-g-MA和TPF的复合材料(PHA-g-MA / TPF)表现出显着的抗张强度和界面粘合性,因为PHA-g-MA与TPF的相容性更高。由于缩合反应,TPF在PHA-g-MA基质中的分散度非常均匀。 PHA-g-MA / TPF膜的耐水性大于PHA / PF膜的耐水性,并且使用人包皮成纤维细胞(FBs)进行的细胞生存力评估表明这两种材料均无毒。此外,埋在土壤堆肥中的复合材料的失重表明,随着PF或TPF含量的增加,生物降解率可以提高。

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