Department of Food Engineering and Technology, School of Engineering, Tezpur University, Napaam 784028, Assam, India.
Department of Food Engineering and Technology, School of Engineering, Tezpur University, Napaam 784028, Assam, India.
Int J Biol Macromol. 2022 Apr 1;203:515-525. doi: 10.1016/j.ijbiomac.2022.01.181. Epub 2022 Feb 2.
Innovations and research on packaging materials are in a fast-growing stage to make them suitable for advanced packaging innovations and sustainability efforts. Biological macromolecules like algal polysaccharides, chitosan, gelatin and others like starch are explored for developing eco-friendly packaging alternatives. Compared to conventional synthetic polymers they have performance limitations that are tried to be overcome with added fillers. The unique properties of fillers in the nano range are explored for this. They can improve the overall property of polymer matrixes by improving barrier properties to oxygen and water vapour, increasing stability and mechanical strength. Exploring the possibilities of new nanoparticle-polymer combinations can bring novel properties in the packaging industry that can be used in smart and intelligent packaging areas. Thus studies on nanocomposite films from polysaccharides, protein compounds and nanoparticles can help to overcome the limitations of bio-polymers for novel packaging applications. This review covers the effect of nanoparticles on the optical, morphological, barrier, thermal and mechanical properties of polysaccharides and proteins based packaging film, along with the types of nanoparticles used in the composite films.
为了使包装材料能够适应先进的包装创新和可持续发展的需求,对其进行了快速发展的创新和研究。探索了藻类多糖、壳聚糖、明胶和淀粉等生物大分子,以开发环保型包装替代品。与传统的合成聚合物相比,它们具有性能限制,试图通过添加填料来克服这些限制。为此,探索了纳米级填料的独特性质。它们可以通过提高对氧气和水蒸气的阻隔性能、提高稳定性和机械强度来改善聚合物基质的整体性能。探索新型纳米粒子-聚合物组合的可能性可以为包装行业带来新的特性,可用于智能和智能包装领域。因此,研究多糖、蛋白质化合物和纳米粒子的纳米复合材料薄膜可以帮助克服生物聚合物在新型包装应用中的局限性。本文综述了纳米粒子对基于多糖和蛋白质的包装薄膜的光学、形态、阻隔、热和机械性能的影响,以及复合材料薄膜中使用的纳米粒子的类型。