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Application of Protein-Based Films and Coatings for Food Packaging: A Review

机译:蛋白质基薄膜和涂层在食品包装中的应用研究进展

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摘要

As the IV generation of packaging, biopolymers, with the advantages of biodegradability, process ability, combination possibilities and no pollution to food, have become the leading food packaging materials. Biopolymers can be directly extracted from biomass, synthesized from bioderived monomers and produced directly by microorganisms which are all abundant and renewable. The raw materials used to produce biopolymers are low-cost, some even coming from agrion dustrial waste. This review summarized the advances in protein-based films and coatings for food packaging. The materials studied to develop protein-based packaging films and coatings can be divided into two classes: plant proteins and animal proteins. Parts of proteins are referred in this review, including plant proteins i.e., gluten, soy proteins and zein, and animal proteins i.e., casein, whey and gelatin. Films and coatings based on these proteins have excellent gas barrier properties and satisfactory mechanical properties. However, the hydrophilicity of proteins makes the protein-based films present poor water barrier characteristics. The application of plasticizers and the corresponding post-treatments can make the properties of the protein-based films and coatings improved. The addition of active compounds into protein-based films can effectively inhibit or delay the growth of microorganisms and the oxidation of lipids. The review also summarized the research about the storage requirements of various foods that can provide corresponding guidance for the preparation of food packaging materials. Numerous application examples of protein-based films and coatings in food packaging also confirm their important role in food packaging materials.
机译:作为第四代包装,具有生物降解性,加工能力,组合可能性和对食品无污染的优点的生物聚合物已成为食品的主要包装材料。可以从生物质中直接提取生物聚合物,从生物来源的单体合成生物聚合物,并直接由丰富且可再生的微生物生产。用于生产生物聚合物的原材料价格低廉,有些甚至来自农业垃圾。这篇综述总结了用于食品包装的蛋白质基薄膜和涂层的研究进展。用于开发基于蛋白质的包装膜和涂层的研究材料可以分为两类:植物蛋白和动物蛋白。本文中提及的蛋白质部分包括植物蛋白,即面筋,大豆蛋白和玉米醇溶蛋白,以及动物蛋白,如酪蛋白,乳清和明胶。基于这些蛋白质的薄膜和涂层具有出色的阻气性和令人满意的机械性能。然而,蛋白质的亲水性使得基于蛋白质的膜呈现出差的防水性。增塑剂的应用和相应的后处理可以改善蛋白质基薄膜和涂层的性能。将活性化合物添加到基于蛋白质的薄膜中可以有效抑制或延迟微生物的生长和脂质的氧化。综述还总结了有关各种食品储存需求的研究,可以为食品包装材料的制备提供相应的指导。食品包装中基于蛋白质的薄膜和涂层的众多应用实例也证实了它们在食品包装材料中的重要作用。

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