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首页> 外文期刊>Polymer Degradation and Stability >Thermal analysis applied to the characterization of degradation in soil of polylactide: I. Calorimetric and viscoelastic analyses
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Thermal analysis applied to the characterization of degradation in soil of polylactide: I. Calorimetric and viscoelastic analyses

机译:热分析用于表征聚丙交酯在土壤中的降解:I.量热和粘弹性分析

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An accelerated soil burial test has been performed on a commercial polylactide (PLA) for simulating non-controlled disposal. Degradation in soil promotes physical and chemical changes in polylactide properties, which can be characterized by Thermal Analysis techniques. Physical changes occurred in polylactide due to the degradation in soil were evaluated by correlating their calorimetric and viscoelastic properties. It is highly remarkable that each calorimetric scan offers specific and enlightening information. Degradation in soil affects the polylactide chains reorganization. A multimodal melting behavior is observed for buried PLA, degradation in soil also promotes the enlarging the lamellar thickness distribution of the population with bigger average size. Morphological changes due to degradation in soil lead to an increase in the free volume of the polylactide chains in the amorphous phase that highly affected the bulk properties. Thermal Analysis techniques provide reliable indicators of the degradation stage of polylactide induced by degradation in soil, as corroborated by molecular weight analysis.
机译:已对商用聚丙交酯(PLA)进行了加速的土壤掩埋测试,以模拟非受控处置。土壤中的降解促进了聚丙交酯性质的物理和化学变化,这可以通过热分析技术来表征。通过将它们的量热和粘弹性相关联来评估由于土壤降解而在聚丙交酯中发生的物理变化。极为显着的是,每次量热扫描都提供了特定的启发性信息。土壤中的降解影响聚丙交酯链的重组。对于埋藏的PLA,观察到多峰熔融行为,在土壤中的降解还促进了具有更大平均尺寸的种群的层状厚度分布的扩大。由于土壤降解引起的形态变化导致非晶相中聚丙交酯链的自由体积增加,这极大地影响了其整体性能。如分子量分析所证实的,热分析技术提供了由土壤降解引起的聚丙交酯降解阶段的可靠指标。

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