Barbato Antonio, Apicella Annalisa, Malvano Francesca, Scarfato Paola, Incarnato Loredana
Department of Industrial Engineering, University of Salerno, Via Giovanni Paolo II, 132, 84084 Fisciano, Italy.
Polymers (Basel). 2023 Oct 5;15(19):4002. doi: 10.3390/polym15194002.
Polyvinyl alcohol (PVOH) exhibits outstanding gas-barrier properties, which favor its use as a biodegradable, high-barrier coating on food-packaging films, possibly in combination with modified atmospheres. Nonetheless, its high sensitivity to water can result in a severe loss of barrier properties, significantly limiting its applications with fresh foods and in high-humidity conditions. In this work, the water vapor (P) and oxygen permeability (PO) of high-barrier biodegradable films with PVOH/PLA + wax double coatings were extensively characterized in a wide range of relative humidity (from 30 to 90%), aimed at understanding the extent of the interaction of water with the wax and the polymer matrices and the impact of this on the permeation process. What is more, a mathematical model was applied to the P data set in order to assess its potential to predict the permeability of the multilayer films by varying storage/working relative humidity (RH) conditions. The carbon dioxide permeability (PCO) of the films was further evaluated, and the corresponding permselectivity values were calculated. The study was finally augmented through modified atmosphere packaging (MAP) tests, which were carried out on double-coated films loaded with 0 and 5% wax, and UV-Vis analyses. The results pointed out the efficacy of the PLA + wax coating layer in hampering the permeation of water molecules, thus reducing PVOH swelling, as well as the UV-shielding ability of the multilayer structures. Moreover, the MAP tests underlined the suitability of the double-coated films for being used as a sustainable alternative for the preservation of foods under modified atmospheres.
聚乙烯醇(PVOH)具有出色的气体阻隔性能,这使其适合用作食品包装薄膜上的可生物降解高阻隔涂层,可能与气调包装相结合使用。尽管如此,其对水的高敏感性可能导致阻隔性能严重丧失,从而极大地限制了其在新鲜食品和高湿度条件下的应用。在这项工作中,对具有PVOH/PLA +蜡双层涂层的高阻隔可生物降解薄膜在广泛的相对湿度范围(从30%到90%)内的水蒸气渗透率(P)和氧气渗透率(PO)进行了广泛表征,旨在了解水与蜡和聚合物基体的相互作用程度以及这对渗透过程的影响。此外,将一个数学模型应用于P数据集,以评估其通过改变储存/工作相对湿度(RH)条件来预测多层薄膜渗透率的潜力。进一步评估了薄膜的二氧化碳渗透率(PCO),并计算了相应的渗透选择性值。最后通过对含有0%和5%蜡的双层涂层薄膜进行气调包装(MAP)测试以及紫外可见分析,对该研究进行了补充。结果指出了PLA +蜡涂层在阻碍水分子渗透从而减少PVOH溶胀方面的有效性,以及多层结构的紫外线屏蔽能力。此外,MAP测试强调了双层涂层薄膜适合作为气调包装下食品保鲜的可持续替代品。