Computational Modeling and Nanoscale Processing Unit, Indian Institute of Food Processing Technology (IIFPT), Ministry of Food Processing Industries, Government of India, Thanjavur, Tamil Nadu, India.
Compr Rev Food Sci Food Saf. 2020 May;19(3):1156-1186. doi: 10.1111/1541-4337.12556. Epub 2020 Apr 20.
In recent years, with advantages of versatility, functionality, and convenience, multilayer food packaging has gained significant interest. As a single entity, multilayer packaging combines the benefits of each monolayer in terms of enhanced barrier properties, mechanical integrity, and functional properties. Of late, apart from conventional approaches such as coextrusion and lamination, concepts of nanotechnology have been used in the preparation of composite multilayer films with improved physical, chemical, and functional characteristics. Further, emerging techniques such as ultraviolet and cold plasma treatments have been used in manufacturing films with enhanced performance through surface modifications. This work provides an up-to-date review on advancements in the preparation of multilayer films for food packaging applications. This includes critical considerations in design, risk of interaction between the package and the food, mathematical modeling and simulation, potential for scale-up, and costs involved. The impact of in-package processing is also explained considering cases of nonthermal processing and advanced thermal processing. Importantly, challenges associated with degradability and recycling multilayer packages and associated implications on sustainability have been discussed.
近年来,多层食品包装以其多功能性、功能性和便利性的优势引起了广泛关注。作为一个整体,多层包装结合了各单层在增强阻隔性能、机械完整性和功能特性方面的优势。最近,除了共挤和层压等传统方法外,纳米技术的概念也被用于制备具有改进的物理、化学和功能特性的复合多层薄膜。此外,紫外线和冷等离子体处理等新兴技术已被用于通过表面改性来制造性能得到提升的薄膜。本文就食品包装应用中多层薄膜的制备进展进行了综述。其中包括设计中的关键考虑因素、包装与食品之间相互作用的风险、数学建模和模拟、放大的潜力以及涉及的成本。还考虑了非热加工和先进热加工情况下的包装内加工的影响。重要的是,还讨论了与多层包装的可降解性和可回收性相关的挑战及其对可持续性的影响。