Food packaging and its oxygen transfer models in active multilayer structures: A theoretical review

IF 2.1 4区 材料科学 Q3 MATERIALS SCIENCE, COATINGS & FILMS Journal of Plastic Film & Sheeting Pub Date : 2022-01-27 DOI:10.1177/87560879211070465
Rubia Viana Batista, Wanderson Gonçalves Wanzeller, L. Lim, E. Quast, Vânia Zanella Pinto, Vivian Machado de Menezes
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引用次数: 4

Abstract

Many food products are sensitive to oxygen which can promote rancidity, aerobic microorganism growth, browning, vitamin degradation, flavor loss, and other undesirable reactions. Active packaging concepts have been successfully applied to delay these deteriorative phenomena. In particular, oxygen scavengers help limit O2 ingress into packaging thus extending product shelf-life and thereby reducing food waste. Besides oxygen barrier polymers, other composite materials have been developed to reduce the overall O2 permeability into the package by adding oxygen scavengers or barrier fillers into the packaging structures. Typical thermoplastic food packaging barrier properties are summarized, including commercially available ones, and reported in the patent literature. Furthermore, various mathematical models have been developed to predict the oxygen transport behavior in active packaging to simulate oxygen transport in polymeric and composite materials. Such models are helpful to provide a better understanding of the mass transport fundamentals involved and shorten product development cycle time and cost. This review provides an overview of various oxygen absorber systems used in active food packaging. It also summarizes the mathematical models that simulate oxygen transport and absorption in different polymer films. Finally, these models can be adapted for other polymers and O2 scavengers to simulate O2 transfer on active polymeric materials. Simulation tools help the fundamental understanding of the O2 transport behavior and facilitate to developing novel active packaging systems that extend food shelf-life and enhance their safety. Graphical Abstract
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食品包装及其活性多层结构中的氧传递模型:理论综述
许多食品对氧很敏感,氧会促进酸败、需氧微生物生长、褐变、维生素降解、风味丧失和其他不良反应。活性包装概念已成功地应用于延缓这些变质现象。特别是,氧气清除剂有助于限制氧气进入包装,从而延长产品的保质期,从而减少食物浪费。除了氧屏障聚合物外,还开发了其他复合材料,通过在包装结构中添加氧气清除剂或屏障填料来降低包装中的整体氧气渗透率。总结了典型的热塑性食品包装屏障性能,包括市售的,并在专利文献中报道。此外,还建立了各种数学模型来预测活性包装中的氧传输行为,以模拟聚合物和复合材料中的氧传输。这些模型有助于更好地理解所涉及的大规模运输基础,缩短产品开发周期时间和成本。本文综述了活性食品包装中使用的各种吸氧系统。总结了模拟氧在不同聚合物薄膜中的传输和吸收的数学模型。最后,这些模型可以适用于其他聚合物和O2清除剂,以模拟活性聚合物材料上的O2转移。模拟工具有助于对O2运输行为的基本理解,并有助于开发新的活性包装系统,延长食品保质期,提高其安全性。图形抽象
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Plastic Film & Sheeting
Journal of Plastic Film & Sheeting 工程技术-材料科学:膜
CiteScore
6.00
自引率
16.10%
发文量
33
审稿时长
>12 weeks
期刊介绍: The Journal of Plastic Film and Sheeting improves communication concerning plastic film and sheeting with major emphasis on the propogation of knowledge which will serve to advance the science and technology of these products and thus better serve industry and the ultimate consumer. The journal reports on the wide variety of advances that are rapidly taking place in the technology of plastic film and sheeting. This journal is a member of the Committee on Publication Ethics (COPE).
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