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通过多孔纳米材料改善可生物降解食品包装材料的功能。

Improving the functionality of biodegradable food packaging materials via porous nanomaterials.

机构信息

School of Civil and Mechanical Engineering, Curtin University, Bentley, Western Australia, Australia.

Department of Chemistry, Middle East Technical University, Çankaya, Turkey.

出版信息

Compr Rev Food Sci Food Saf. 2023 Jul;22(4):2850-2886. doi: 10.1111/1541-4337.13164. Epub 2023 Apr 28.

Abstract

Non-biodegradability and disposal problems are the major challenges associated with synthetic plastic packaging. This review article discusses a new generation of biodegradable active and smart packaging based on porous nanomaterials (PNMs), which maintains the quality and freshness of food products while meeting biodegradability requirements. PNMs have recently gained significant attention in the field of food packaging due to their large surface area, peculiar structures, functional flexibility, and thermal stability. We present for the first time the recently published literature on the incorporation of various PNMs into renewable materials to develop advanced, environmentally friendly, and high-quality packaging technology. Various emerging packaging technologies are discussed in this review, along with their advantages and disadvantages. Moreover, it provides general information about PNMs, their characterization, and fabrication methods. It also briefly describes the effects of different PNMs on the functionality of biopolymeric films. Furthermore, we examined how smart packaging loaded with PNMs can improve food shelf life and reduce food waste. The results indicate that PNMs play a critical role in improving the antimicrobial, thermal, physicochemical, and mechanical properties of natural packaging materials. These tailor-made materials can simultaneously extend the shelf life of food while reducing plastic usage and food waste.

摘要

不可生物降解性和处理问题是与合成塑料包装相关的主要挑战。本文综述了新一代基于多孔纳米材料 (PNMs) 的可生物降解的活性和智能包装,它在满足生物降解性要求的同时保持了食品的质量和新鲜度。由于 PNMs 具有大的表面积、奇特的结构、功能灵活性和热稳定性,它们最近在食品包装领域引起了人们的极大关注。我们首次展示了最近发表的关于将各种 PNMs 纳入可再生材料以开发先进、环保和高质量包装技术的文献。本文综述了各种新兴的包装技术,讨论了它们的优缺点。此外,它还提供了有关 PNMs 的一般信息,包括其特性、表征和制造方法。它还简要描述了不同 PNMs 对生物聚合物薄膜功能的影响。此外,我们研究了负载 PNMs 的智能包装如何提高食品的保质期并减少食物浪费。结果表明,PNMs 在改善天然包装材料的抗菌、热、物理化学和机械性能方面发挥着关键作用。这些定制材料可以在延长食品保质期的同时减少塑料使用和食物浪费。

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