通过加入木质素实现可生物降解的淀粉-聚乙烯醇复合薄膜在包装中的应用

Shihui Wang, Yanling Hao, Qixiang He, Qiqi Gao
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引用次数: 0

摘要

本研究首先选择了马铃薯淀粉和聚乙烯醇(PVA)的最佳性能配比,然后通过在淀粉-PVA 薄膜基体中添加不同量(0、5、10、15、20 和 25 wt%,基于淀粉质量)的功能添加剂木质素,开发了可持续的高档食品包装薄膜。研究人员从形态、物理和化学特性、阻隔特性、机械特性和抗氧化特性等方面对添加了不同量木质素的淀粉-PVA 薄膜进行了研究。机械测试表明,木质素大大提高了薄膜的拉伸强度(TS),并有效阻止了水蒸气的通过。木质素、淀粉和 PVA 通过氢键连接形成聚合物网络结构,改善了聚合物之间的界面相容性。傅立叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)证实了聚合物分子之间的相互作用和木质素颗粒的分布。木质素中高浓度的酚羟基发生质子耦合电子转移机制,使复合薄膜具有很高的抗氧化活性,DPPH 自由基清除活性实验证明了这一点。同时,它还赋予了薄膜优异的紫外线阻隔性和抗菌性。本研究中木质素的引入为以生物质为原料制备多功能复合薄膜提供了一条重要途径,在食品包装领域具有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biodegradable starch-polyvinyl alcohol composite films by the incorporation of lignin for packaging applications
In this work, firstly, the optimal performance ratio of potato starch and polyvinyl alcohol (PVA) was selected, and then the sustainable high-grade food packaging film was developed by adding different amounts (0, 5, 10, 15, 20, and 25 wt% based on the starch mass) of functional additive lignin into the starch - PVA film matrix. Starch - PVA based films with different amounts of lignin were studied from the aspects of morphology, physical and chemical properties, barrier properties, mechanical properties and antioxidant properties. Mechanical tests showed that lignin significantly improved the tensile strength (TS) of the film and effectively blocked the passage of water vapor. Lignin, starch and PVA were linked by hydrogen bond to form polymer network structure, which improved the interfacial compatibility between polymers. The interaction between polymer molecules and the distribution of lignin particles were confirmed by Fourier transform infrared spectroscopy (FTIR) and scanning electron microscopy (SEM). The high content of phenolic hydroxyl in lignin undergoes proton coupled electron transfer mechanism, which endows the composite film with high antioxidant activity, which is proved by DPPH radical scavenging activity experiment. At the same time, it also gives the film excellent UV barrier and antibacterial properties. The introduction of lignin in this study provides a valuable way for the preparation of multifunctional composite films using biomass as raw materials, and has a potential application prospect in food packaging.
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