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Poly(lactic acid) mass transfer properties

机译:聚(乳酸)传质性能

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Poly(lactic acid) (PLA), a biodegradable and compostable polymer, is gaining market acceptance and has been extensively investigated. The versatility of PLA has led to its broad and different applications in medical, agriculture, and food packaging fields. Similar to other polymers, PLA is permeable to gases, vapors and organic compounds. Thus, the mass transfer properties of PLA can influence its suitability for end-use applications. Here, we present a comprehensive, systematic, and critical review of more than 300 papers published since 1990 reporting the mass transfer properties of PLA, which include permeability, diffusion and solubility to gases, water vapor and organic vapors, along with migration of chemical compounds from PLA. Overall, PLA provides moderate barrier to gases, water vapor, and organic compounds. Barrier enhancement can be achieved through modifications such as blending with other polymers and formation of composite structures. Most of the mass transfer parameters reported in the literature are based on two-phase mobile amorphous and crystalline fractions, omitting the role of the restricted amorphous fraction, which can lead to unclear comprehension of PLA barrier properties as well as what affects those properties. Additional research is needed to address this shortcoming. This review provides an in-depth analysis of PLA mass transfer and a foundation for future research and commercial development. (C) 2018 Elsevier B.V. All rights reserved.
机译:聚(乳酸)(PLA),可生物降解和可堆肥聚合物,正在获得市场接受,并已被广泛调查。 PLA的多功能性导致其在医疗,农业和食品包装领域的广泛和不同应用。与其他聚合物类似,PLA可透水,透气,蒸气和有机化合物。因此,PLA的传质性能可以影响其适用性的最终用途应用。在这里,我们提出了自1990年以来出版的300多篇论文的全面,系统和批判性审查,报告了PLA的传质特性,包括对气体,水蒸气和有机蒸汽的渗透性,扩散和溶解性以及化学化合物的迁移从PLA。总体而言,PLA为气体,水蒸气和有机化合物提供适中的障碍。通过与其他聚合物混合的修改可以实现屏障增强和复合结构的形成。文献中报道的大多数传质参数基于两相移动非晶和结晶级分,省略了限制非晶部分的作用,这可能导致PLA屏障性质的理解,以及影响这些性质的原因。需要额外的研究来解决这种缺点。本综述对解放军大规模转移和未来研究和商业发展的基础提供了深入的分析。 (c)2018 Elsevier B.v.保留所有权利。

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