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多组分体系开发具有增强物理特性的抗菌 PLA 基薄膜。

Multicomponent system for development of antimicrobial PLA-based films with enhanced physical characteristics.

机构信息

Department of Chemistry, Faculty of Science, Sakarya University, 54187, Sakarya, Turkey.

Department of Food Engineering, Faculty of Engineering, Sakarya University, 54050, Sakarya, Turkey.

出版信息

Int J Biol Macromol. 2024 Mar;262(Pt 1):129832. doi: 10.1016/j.ijbiomac.2024.129832. Epub 2024 Feb 6.

Abstract

This study aims to develop polylactic acid (PLA)-based packaging films with imparted antimicrobial properties and enhanced physical characteristics by evaluating the likely interaction among multiple film components. For this purpose; epoxidized soybean oil (ES) (20 %) serves as a plasticizer, spruce resin (SR) (15 %) functions as both a plasticizer and antimicrobial agent, ZnO (0.1 %) acts as a nanofiller and antimicrobial, and finally thyme and clove essential oil mixture (5 % and 10 %) serves as an antimicrobial agent were incorporated to PLA film formulation. Composite materials were prepared by the solvent casting method using methylene chloride as the solvent. The developed films were characterized in terms of physical, mechanical, thermal, and antimicrobial properties. Tensile strength (59 MPa) and elastic modulus (2625 MPa) of the neat PLA film gradually decreased to 8.99 MPa and 725.4 MPa, respectively, with the sequential addition of all components, indicating enhanced flexibility. SR, ZnO, and EOs significantly imparted antimicrobial property to the PLA film as demonstrated by the inhibition zone of 13.83 mm and 15.67 mm observed for E. coli and S. aureus, respectively. The barrier properties of the films were enhanced by the addition of SR and ZnO; however, EOs increased the water vapor permeability from 0.080 to 0.090 g.mm/m.day.kPa compared to the neat PLA film. Principal component and hierarchical cluster analysis enabled the successful discrimination of the films, demonstrating how the film properties are affected by the film components. Therefore, this study suggests that selection of a proper combination is essential to highly benefit from the multicomponent film systems for designing alternative food packaging materials with desired properties.

摘要

本研究旨在通过评估多种薄膜成分之间的可能相互作用,开发具有赋予的抗菌性能和增强的物理特性的基于聚乳酸(PLA)的包装薄膜。为此,将环氧大豆油(ES)(20%)用作增塑剂,云杉树脂(SR)(15%)同时用作增塑剂和抗菌剂,氧化锌(ZnO)(0.1%)用作纳米填料和抗菌剂,最后将百里香和丁香精油混合物(5%和 10%)用作抗菌剂加入到 PLA 薄膜配方中。通过使用二氯甲烷作为溶剂的溶液浇铸法制备复合材料。根据物理、机械、热和抗菌性能对开发的薄膜进行了表征。纯 PLA 薄膜的拉伸强度(59 MPa)和弹性模量(2625 MPa)逐渐降低,分别为 8.99 MPa 和 725.4 MPa,这是由于所有成分的顺序添加,表明柔韧性增强。SR、ZnO 和 EOs 显著赋予 PLA 薄膜抗菌性能,对大肠杆菌和金黄色葡萄球菌的抑菌圈分别为 13.83mm 和 15.67mm。SR 和 ZnO 的添加增强了薄膜的阻隔性能;然而,与纯 PLA 薄膜相比,精油将水蒸气透过率从 0.080 增加到 0.090 g.mm/m.day.kPa。主成分和层次聚类分析能够成功区分薄膜,表明薄膜性能如何受到薄膜成分的影响。因此,本研究表明,选择适当的组合对于从多组分薄膜系统中获得高度受益至关重要,以设计具有所需性能的替代食品包装材料。

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