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Water absorption and enzymatic degradation of poly(lactic acid)/rice starch composites

机译:聚乳酸/大米淀粉复合材料的吸水和酶促降解

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Poly(lactic acid) (PLA) composites consisting of PLA, rice starch (RS) (0-50 wt%) and epoxidised natural rubber (ENR50) were compounded by a twin-screw extruder and compression moulded into dumbbell specimens. Tensile tests were performed to characterize the mechanical properties of the PLA/RS composites. Morphological studies were done on the tensile fractured surface of the specimens by using scanning electron microscopy (SEM). Twenty weight percent of RS achieved a good balance of strength and stiffness. Beyond 20 wt% loading of RS, the tensile strength and elongation at break of PLA decreased drastically. This may be attributed to the agglomeration of RS, which could then act as stress concentrator. The incorporation of ENR50 increased the tensile strength and elongation at break of the PLA/RS composites remarkably, owing to the elastomeric behaviour and compatibilisation effects of ENR50. Interestingly, the morphology of PLA/RS composites transformed to a more ductile one with the addition of ENR. The kinetics of water absorption of the PLA/RS composites conforms to Fick's law. The M_m and D values are dependent on the RS and ENR concentrations. The tensile properties of the PLA/RS composites deteriorated after water absorption. The retention-ability and recoverability of the PLA/RS composites are relatively low, attributed to the hydrolysis of PLA, degradation of the PLA-RS interface and leaching of the RS particles. In addition, the tensile properties of PLA/RS composites decreased drastically upon exposure to enzymatic degradation. Extensive pinhole and surface erosion on the PLA/RS composites indicate high degree of hydrolysis. Whilst the addition of ENR leads to some improvements in tensile properties, nevertheless, it enhanced the biodegradability of the PLA/RS composites when exposed to water and α-amylase enzymatic treatments.
机译:用双螺杆挤出机将由PLA,大米淀粉(RS)(0-50 wt%)和环氧化天然橡胶(ENR50)组成的聚乳酸(PLA)复合材料复合并压制成哑铃形样品。进行拉伸测试以表征PLA / RS复合材料的机械性能。使用扫描电子显微镜(SEM)对样品的拉伸断裂表面进行了形态学研究。 RS的20重量%实现了强度和刚度的良好平衡。超过RS的20重量%载荷,PLA的拉伸强度和断裂伸长率急剧下降。这可能归因于RS的聚集,然后可以充当应力集中器。由于ENR50的弹性体行为和增容作用,ENR50的加入显着提高了PLA / RS复合材料的拉伸强度和断裂伸长率。有趣的是,添加ENR后,PLA / RS复合材料的形态转变为更具延展性的形态。 PLA / RS复合材料的吸水动力学符合菲克定律。 M_m和D值取决于RS和ENR浓度。吸水后,PLA / RS复合材料的拉伸性能下降。 PLA / RS复合材料的保留能力和可恢复性相对较低,这归因于PLA的水解,PLA-RS界面的降解以及RS颗粒的浸出。此外,PLA / RS复合材料的拉伸性能在暴露于酶促降解后急剧下降。 PLA / RS复合材料上广泛的针孔和表面腐蚀表明高度水解。尽管添加了ENR可以使拉伸性能有所改善,但是当暴露于水和α-淀粉酶处理后,它可以增强PLA / RS复合材料的生物降解性。

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