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基于 Mater-Bi 和鞣花酸/壳聚糖涂层的生物聚合物的加工、表征及崩解性能

Processing, Characterization and Disintegration Properties of Biopolymers Based on Mater-Bi and Ellagic Acid/Chitosan Coating.

作者信息

Villegas Carolina, Martínez Sara, Torres Alejandra, Rojas Adrián, Araya Rocío, Guarda Abel, Galotto María José

机构信息

Center for Packaging Innovation (LABEN), Center for the Development of Nanoscience and Nanotechnology (CEDENNA), Technology Faculty, University of Santiago de Chile (USACH), Santiago 9170201, Chile.

出版信息

Polymers (Basel). 2023 Mar 21;15(6):1548. doi: 10.3390/polym15061548.

Abstract

Among the most promising synthetic biopolymers to replace conventional plastics in numerous applications is MaterBi (MB), a commercial biodegradable polymer based on modified starch and synthetic polymers. Actually, MB has important commercial applications as it shows interesting mechanical properties, thermal stability, processability and biodegradability. On the other hand, research has also focused on the incorporation of natural, efficient and low-cost active compounds into various materials with the aim of incorporating antimicrobial and/or antioxidant capacities into matrix polymers to extend the shelf life of foods. Among these is ellagic acid (EA), a polyphenolic compound abundant in some fruits, nuts and seeds, but also in agroforestry and industrial residues, which seems to be a promising biomolecule with interesting biological activities, including antioxidant activity, antibacterial activity and UV-barrier properties. The objective of this research is to develop a film based on commercial biopolymer Mater-Bi (MB) EF51L, incorporating active coating from chitosan with a natural active compound (EA) at two concentrations (2.5 and 5 wt.%). The formulations obtained complete characterization and were carried out in order to evaluate whether the incorporation of the coating significantly affects thermal, mechanical, structural, water-vapor barrier and disintegration properties. From the results, FTIR analysis yielded identification, through characteristic peaks, that the type of MB used is constituted by three polymers, namely PLA, TPS and PBAT. With respect to the mechanical properties, the values of tensile modulus and tensile strength of the MB-CHI film were between 15 and 23% lower than the values obtained for the MB film. The addition of 2.5 wt.% EA to the CHI layer did not generate changes in the mechanical properties of the system, whereas a 5 wt.% increase in ellagic acid improved the mechanical properties of the CHI film through the addition of natural phenolic compounds at high concentrations. Finally, the disintegration process was mainly affected by the PBAT biopolymer, causing the material to not disintegrate within the times indicated by ISO 20200.

摘要

在众多应用中最有希望替代传统塑料的合成生物聚合物之一是MaterBi(MB),它是一种基于改性淀粉和合成聚合物的商业可生物降解聚合物。实际上,MB具有重要的商业应用,因为它具有有趣的机械性能、热稳定性、加工性能和生物降解性。另一方面,研究还集中在将天然、高效且低成本的活性化合物掺入各种材料中,目的是将抗菌和/或抗氧化能力引入基体聚合物中以延长食品的保质期。其中包括鞣花酸(EA),一种在某些水果、坚果和种子中含量丰富的多酚化合物,在农林业和工业废渣中也有,它似乎是一种具有有趣生物活性的有前途的生物分子,包括抗氧化活性、抗菌活性和紫外线阻隔性能。本研究的目的是开发一种基于商业生物聚合物Mater-Bi(MB)EF51L的薄膜,在壳聚糖活性涂层中掺入两种浓度(2.5重量%和5重量%)的天然活性化合物(EA)。对所得配方进行了全面表征,以评估涂层的掺入是否会显著影响热性能、机械性能、结构性能、水蒸气阻隔性能和崩解性能。结果表明,通过傅里叶变换红外光谱(FTIR)分析,利用特征峰鉴定出所用的MB类型由三种聚合物组成,即聚乳酸(PLA)、热塑性淀粉(TPS)和聚己二酸/对苯二甲酸丁二醇酯(PBAT)。关于机械性能,MB-壳聚糖(CHI)薄膜的拉伸模量和拉伸强度值比MB薄膜获得的值低15%至23%。向CHI层中添加2.5重量%的EA不会使体系的机械性能发生变化,而鞣花酸增加5重量%则通过添加高浓度的天然酚类化合物改善了CHI薄膜的机械性能。最后,崩解过程主要受PBAT生物聚合物的影响,导致材料在ISO 20200规定的时间内未崩解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fce0/10053201/1bbe67108b03/polymers-15-01548-g001.jpg

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