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Preparation and Characterization of Bio-Based PLA/PBAT and Cinnamon Essential Oil Polymer Fibers and Life-Cycle Assessment from Hydrolytic Degradation

机译:基于生物的PLA / PBAT和肉桂精油聚合物纤维的制备与表征来自水解降解的生命周期评估

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摘要

Nowadays, the need to reduce the dependence on fuel products and to achieve a sustainable development is of special importance due to environmental concerns. Therefore, new alternatives must be sought. In this work, extruded fibers from poly (lactic acid) (PLA) and poly (butylene adipate-co-terephthalate) (PBAT) added with cinnamon essential oil (CEO) were prepared and characterized, and the hydrolytic degradation was assessed. A two-phase system was observed with spherical particles of PBAT embedded in the PLA matrix. The thermal analysis showed partial miscibility between PLA and PBAT. Mechanically, Young’s modulus decreased and the elongation at break increased with the incorporation of PBAT and CEO into the blends. The variation in weight loss for the fibers was below 5% during the period of hydrolytic degradation studied with the most important changes at 37 °C and pH 8.50. From microscopy, the formation of cracks in the fiber surface was evidenced, especially for PLA fibers in alkaline medium at 37 °C. This study shows the importance of the variables that influence the performance of polyester-cinnamon essential oil-based fibers in agro-industrial applications for horticultural product preservation.
机译:如今,由于环境问题,需要减少对燃料产品和实现可持续发展的依赖性的重要性。因此,必须寻求新的替代方案。在这项工作中,制备和表征来自聚(乳酸)(PLA)(PLA)(PLA)(PLA)(PLA)和聚(丁烯己二酸丁二醇酯)(PBAT)的挤出纤维,并评估水解降解。用嵌入PLA矩阵中的PBAT球形颗粒观察到两相系统。热分析显示PLA和PBAT之间的部分混杂性。机械地,杨氏模量减少,断裂伸长率随着PABAT和CEO的掺入混合物而增加。在第37℃和pH8.50的最重要变化的水解降解期间,纤维的重量损失的变化低于5%。从显微镜检查,显着形成纤维表面中的裂缝,特别是在37℃下的碱性培养基中的PLA纤维。本研究表明,影响聚酯 - 肉桂精油基纤维在农业工业应用中对园艺产品保存的应用的性能的重要性。

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