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Gas Transport Phenomena and Polymer Dynamics in PHB/PLA Blend Films as Potential Packaging Materials

机译:作为潜在包装材料的PHB / PLA共混膜中的气体传输现象和聚合物动力学

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摘要

Actually, in order to replace traditional fossil-based polymers, many efforts are devoted to the design and development of new and high-performance bioplastics materials. Poly(hydroxy alkanoates) (PHA ) as well as polylactides are the main candidates as naturally derived polymers. The intention of the present study is to manufacture fully bio-based blends based on two polyesters: poly (3-hydroxybutyrate) (PHB) and polylactic acid (PLA) as real competitors that could be used to replace petrol polymers in packaging industry. Blends in the shape of films have been prepared by chloroform solvent cast solution methodology, at different PHB/PLA ratios: 1/0, 1/9, 3/7, 5/5, 0/1. A series of dynamic explorations have been performed in order to characterize them from a different point of view. Gas permeability to N , O , and CO gases and probe (TEMPO) electron spin resonance (ESR) analyses were performed. Blend surface morphology has been evaluated by Scanning Electron Microscopy (SEM) while their thermal behavior was analyzed by Differential Scanning Calorimetry (DSC) technique. Special attention was devoted to color and transparency estimation. Both probe rotation mobility and N , O , and CO permeation have monotonically decreased during the transition from PLA to PHB, for all contents of bio-blends, namely because of transferring from PLA with lower crystallinity to PHB with a higher one. Consequently, the role of the crystallinity was elucidated. The temperature dependences for CO permeability and diffusivity as well as for probe correlation time allowed the authors to evaluate the activation energy of both processes. The values of gas transport energy activation and TEMPO rotation mobility are substantially close to each other, which should testify that polymer segmental mobility determines the gas permeability modality.
机译:实际上,为了替代传统的基于化石的聚合物,许多努力致力于新型高性能生物塑料材料的设计和开发。聚(羟基链烷酸酯)(PHA)和聚丙交酯是天然衍生聚合物的主要候选者。本研究的目的是生产基于两种聚酯的完全生物基共混物:聚(3-羟基丁酸酯)(PHB)和聚乳酸(PLA)作为真正的竞争者,可以用来代替包装工业中的汽油聚合物。通过氯仿溶剂浇铸溶液方法,以不同的PHB / PLA比率:1 / 0、1 / 9、3 / 7、5 / 5、0 / 1制备了膜状共混物。为了从不同的角度表征它们,已经进行了一系列的动态探索。进行了N,O和CO气体的透气性和探针(TEMPO)电子自旋共振(ESR)分析。共混物的表面形态已通过扫描电子显微镜(SEM)进行了评估,而其热行为则通过差示扫描量热法(DSC)技术进行了分析。特别注意颜色和透明度估计。对于所有含量的生物混合物,从PLA到PHB的过渡过程中,探针旋转迁移率以及N,O和CO渗透率都单调降低,这是因为从结晶度较低的PLA转移到结晶度较高的PHB。因此,阐明了结晶度的作用。温度对CO渗透率和扩散率以及探针相关时间的依赖性使作者能够评估这两个过程的活化能。气体传输能量活化值和TEMPO旋转迁移率的值基本上彼此接近,这应证明聚合物的分段迁移率决定了气体渗透率的形式。

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