Azevedo Ana G, Barros Carolina, Miranda Sónia, Machado Ana Vera, Castro Olga, Silva Bruno, Saraiva Margarida, Silva Ana Sanches, Pastrana Lorenzo, Carneiro Olga Sousa, Cerqueira Miguel A
International Iberian Nanotechnology Laboratory, Av. Mestre José Veiga s/n, 4715-330 Braga, Portugal.
IPC-Institute for Polymers and Composites, University of Minho, Campus de Azurém, 4800-058 Guimarães, Portugal.
Polymers (Basel). 2022 Jun 16;14(12):2442. doi: 10.3390/polym14122442.
Active food packaging is a dynamic area where the scientific community and industry have been trying to find new strategies to produce innovative packaging that is economically viable and compatible with conventional production processes. The materials used to develop active packaging can be organized into scavenging and emitting materials, and based on organic and inorganic materials. However, the incorporation of these materials in polymer-based flexible packaging is not always straightforward. The challenges to be faced are mainly related to active agents' sensitivity to high temperatures or difficulties in dispersing them in the high viscosity polymer matrix. This review provides an overview of methodologies and processes used in the production of active packaging, particularly for the production of active flexible films at the industrial level. The direct incorporation of active agents in polymer films is presented, focusing on the processing conditions and their effect on the active agent, and final application of the packaging material. Moreover, the incorporation of active agents by coating technologies and supercritical impregnation are presented. Finally, the use of carriers to help the incorporation of active agents and several methodologies is discussed. This review aims to guide academic and industrial researchers in the development of active flexible packaging, namely in the selection of the materials, methodologies, and process conditions.
活性食品包装是一个充满活力的领域,科学界和产业界一直在努力寻找新策略,以生产出经济可行且与传统生产工艺兼容的创新包装。用于开发活性包装的材料可分为清除和释放材料,并基于有机和无机材料。然而,将这些材料纳入基于聚合物的柔性包装并非总是一帆风顺。面临的挑战主要与活性剂对高温的敏感性或在高粘度聚合物基质中分散它们的困难有关。本综述概述了活性包装生产中使用的方法和工艺,特别是工业级活性柔性薄膜的生产。介绍了活性剂在聚合物薄膜中的直接掺入,重点关注加工条件及其对活性剂的影响以及包装材料的最终应用。此外,还介绍了通过涂层技术和超临界浸渍掺入活性剂的方法。最后,讨论了使用载体来帮助掺入活性剂以及几种方法。本综述旨在指导学术和产业研究人员开发活性柔性包装,即在材料、方法和工艺条件的选择方面。