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Thermal analysis applied to the characterization of degradation in soil of polylactide: I. Calorimetric and viscoelastic analyses
Authors:L Santonja-Blasco
Institution:Instituto de Investigación en Tecnología de Materiales, Universidad Politécnica de Valencia, Camino de Vera s/n 46071 Valencia, Spain
Abstract: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.
Keywords:Polylactide (PLA)  Degradation in soil  Differential Scanning Calorimetry (DSC)  Dynamic-Mechanical-Thermal Analysis (DMTA)  Free volume  Lamellar thickness distribution
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