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开发具有韧性、阻隔性能和气体选择性的超薄聚(L-乳酸)基薄膜:实现气体渗透性可控的绿色食品包装。

Development of ultra-thin poly(L-lactic acid)-based films integrating toughness, barrier properties, and gas selectivity: Towards gas-permeation controllable green food packaging.

机构信息

College of Food Science and Engineering, Inner Mongolia Agricultural University, 306 Zhaowuda Road, Hohhot, Inner Mongolia 010018, China.

Xiamen Key Laboratory of Rare Earth Photoelectric Functional Materials, Xiamen Institute of Rare Earth Materials, Chinese Academy of Sciences, Xiamen 361021, China.

出版信息

Food Chem. 2024 Aug 15;449:139218. doi: 10.1016/j.foodchem.2024.139218. Epub 2024 Apr 2.

Abstract

High costs and low performance have constrained the application of bio-based materials in food packaging. Herein, a series of ultra-thin poly(L-lactic acid-iconic acid N-diol) (P(LA-NI)) copolymer films were developed using a "one-step" polycondensation process with integrated toughness, barrier properties, gas selectivity, and quality control features. The massive branched structure and gg conformers in P(LA-NI) act as "internal chain expansion" and "internal plasticization". Meanwhile, P(LA-NI) contains numerous polar groups and unique nanoscale microphase structures to realize excellent CO, O barrier, CO/O selectivity, anti-fogging, and UV shielding functions. The atmosphere within the package spontaneously achieves the desirable low O and high CO levels when packaging button mushrooms with high respiratory metabolism. Eventually, the shelf life of button mushrooms reached 24 days, >3-fold extended. This PLLA-based film meets "dual carbon" and "food safety" goals and has vast potential for fresh food preservation.

摘要

高成本和低性能限制了生物基材料在食品包装中的应用。在此,通过“一步法”缩聚工艺,开发了一系列具有综合韧性、阻隔性能、气体选择性和质量控制特点的超薄聚(L-乳酸-异氰酸酯-N-二醇)(P(LA-NI))共聚物薄膜。P(LA-NI)中的大量支化结构和 gg 构象充当“内部链扩展”和“内部增塑”。同时,P(LA-NI)含有大量的极性基团和独特的纳米级微相结构,实现了优异的 CO、O 阻隔性、CO/O 选择性、防雾性和 UV 屏蔽功能。当用该包装包装具有高呼吸代谢的纽扣蘑菇时,包装内的气氛会自发地达到理想的低 O 和高 CO 水平。最终,纽扣蘑菇的货架期延长了 3 倍以上,达到了 24 天。这种基于 PLLA 的薄膜符合“双碳”和“食品安全”的目标,在新鲜食品保鲜方面具有广阔的应用前景。

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