Singha Shuvra, Hedenqvist Mikael S
KTH Royal Institute of Technology, School of Engineering Sciences in Chemistry, Biotechnology and Health, Department of Fibre and Polymer Technology, SE-100 44 Stockholm, Sweden.
Polymers (Basel). 2020 May 11;12(5):1095. doi: 10.3390/polym12051095.
Poly(lactic acid) (PLA) is considered to be among the best biopolymer substitutes for the existing petroleum-based polymers in the field of food packaging owing to its renewability, biodegradability, non-toxicity and mechanical properties. However, PLA displays only moderate barrier properties to gases, vapors and organic compounds, which can limit its application as a packaging material. Hence, it becomes essential to understand the mass transport properties of PLA and address the transport challenges. Significant improvements in the barrier properties can be achieved by incorporating two-dimensional clay nanofillers, the planes of which create tortuosity to the diffusing molecules, thereby increasing the effective length of the diffusion path. This article reviews the literature on barrier properties of PLA/clay nanocomposites. The important PLA/clay nanocomposite preparation techniques, such as solution intercalation, melt processing and in situ polymerization, are outlined followed by an extensive account of barrier performance of nanocomposites drawn from the literature. Fundamentals of mass transport phenomena and the factors affecting mass transport are also presented. Furthermore, mathematical models that have been proposed/used to predict the permeability in polymer/clay nanocomposites are reviewed and the extent to which the models are validated in PLA/clay composites is discussed.
聚乳酸(PLA)因其可再生性、生物降解性、无毒以及机械性能,被认为是食品包装领域现有石油基聚合物的最佳生物聚合物替代品之一。然而,PLA对气体、蒸汽和有机化合物仅表现出中等阻隔性能,这可能会限制其作为包装材料的应用。因此,了解PLA的传质特性并应对传输挑战变得至关重要。通过加入二维粘土纳米填料可以显著提高阻隔性能,其平面会对扩散分子产生曲折度,从而增加扩散路径的有效长度。本文综述了关于PLA/粘土纳米复合材料阻隔性能的文献。概述了重要的PLA/粘土纳米复合材料制备技术,如溶液插层、熔融加工和原位聚合,随后详细介绍了从文献中得出的纳米复合材料的阻隔性能。还介绍了传质现象的基本原理以及影响传质的因素。此外,对已提出/用于预测聚合物/粘土纳米复合材料渗透率的数学模型进行了综述,并讨论了这些模型在PLA/粘土复合材料中的验证程度。