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The Effect of Poly (Ethylene glycol) Emulation on the Degradation of PLA/Starch Composites

机译:聚(乙二醇)仿真对PLA /淀粉复合材料降解的影响

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摘要

As a hydrophilic renewable polymer, starch has been widely used in biocompatible plastics as a filler for more than two decades. The present study aimed at investigating the effects of polyethylene glycol (PEG), as a plasticizer, on the physicochemical properties of a hybrid composite—polylactic acid (PLA) and thermoplastic starch (TPS). A solvent evaporation process was adopted to gelatinize the starch and disparate PEG contents ranging from 3 to 15 wt.% (with respect to the sample weight) were examined. It was revealed that the increase in the PEG content was accompanied by an increment in the starch gelatinization degree. Referring to the microstructural analyses, the TPS/PLA mixture yielded a ductile hybrid composite with a fine morphology and a uniform phase. Nevertheless, two different solvents, including acetone and ethanol, were used to assess if they had any effect on the hybrid’s morphology, tensile strength and thermal properties. It was found that ethanol culminated in a porous hybrid composite with a finer morphology and better starch distribution in the PLA structure than acetone. As the result of PEG addition to the composite, the crystallinity and tensile strength were decreased, whereas the elongation increased. The hydrolytic degradation of samples was assessed under different pH and thermal conditions. Moreover, the microbial degradation of the PLA/TPS hybrid composite containing different PEG molar fractions was investigated in the soil for 45 days. The rate of degradation in both hydrolytic and biodegradation increased in the samples with a higher amount of PEG with ethanol solvent.
机译:作为亲水性再生性聚合物,淀粉已广泛用于生物相容性塑料中作为填料,超过二十年。本研究旨在研究聚乙二醇(PEG),作为增塑剂,对杂化复合 - 聚乳酸(PLA)和热塑性淀粉(TPS)的物理化学性质的影响。采用溶剂蒸发过程将淀粉凝胶化,不同的PEG含量范围为3-15重量%。检测%(相对于样品重量)。据透露,PEG含量的增加伴随着淀粉凝胶化程度的增量。参考微观结构分析,TPS / PLA混合物产生具有细形态和均匀相的延性杂化复合物。然而,两种不同的溶剂,包括丙酮和乙醇,用于评估它们对杂种形态,拉伸强度和热性能是否有任何影响。发现乙醇在多孔杂交复合物中终止于多孔杂交复合材料,并在PLA结构中具有更好的形态和更好的淀粉分布而不是丙酮。作为复合材料的PEG除,结晶度和拉伸强度降低,而伸长率增加。在不同的pH和热条件下评估样品的水解降解。此外,在土壤中研究了含有不同PEG摩尔级分的PLA / TPS杂化复合材料的微生物降解45天。水解和生物降解中的降解速率在具有较高量的乙醇溶剂的样品中增加。

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