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Kiwi Fruits Preservation Using Novel Edible Active Coatings Based on Rich Thymol Halloysite Nanostructures and Chitosan/Polyvinyl Alcohol Gels

百里香酚 埃洛石 活性包装 乙烯醇 壳聚糖 聚乙烯醇 材料科学 食品包装 食品科学 化学工程 乳酸链球菌素 生物高聚物 化学 抗菌剂 有机化学 复合材料 精油 聚合物 工程类
作者
Constantinos E. Salmas,Aris E. Giannakas,Dimitrios Moschovas,Eleni Kollia,Stavros Georgopoulos,Christina Gioti,Areti Leontiou,Apostolos Avgeropoulos,Anna Kopsacheili,Learda Avdylaj,Charalampos Proestos
出处
期刊:Gels [Multidisciplinary Digital Publishing Institute]
卷期号:8 (12): 823-823 被引量:31
标识
DOI:10.3390/gels8120823
摘要

The concept of this study is the replacement of previous fossil-based techniques for food packaging and food shelf-life extension, with novel more green processes and materials following the spirit of circular economy and the global trend for environmentally positive fingerprints. A novel adsorption process to produce thymol-halloysite nanohybrids is presented in this work. The high dispersion of this thymol-halloysite nanostructure in chitosan biopolymer is one of the goals of this study. The incorporation of this biodegradable matrix with poly-vinyl-alcohol produced a very promising food-packaging film. Mechanical, water-oxygen barrier, antimicrobial, and antioxidant properties were measured. Transparency levels were also tested using a UV-vis instrument. Moreover, the developed films were tested in-vivo for the preservation and the extension of the shelf-life of kiwi fruits. In all cases, results indicated that the increased fraction of thymol from thyme oil significantly enhances the antimicrobial and antioxidant activity of the prepared chitosan-poly-vinyl- alcohol gel. The use of the halloysite increases the mechanical and water-oxygen barrier properties and leads to a control release process of thymol which extends the preservation and the shelf-life of kiwi fruits. Finally, the results indicated that the halloysite improves the properties of the chitosan/poly-vinyl-alcohol films, and the thymol makes them further advantageous.
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