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High barrier polyhydroxyalcanoate food packaging film by means of nanostructured electrospun interlayers of zein

机译:玉米醇溶蛋白的纳米结构电纺中间层,高阻隔性聚羟基铝酸酯食品包装薄膜

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摘要

In this work, multilayer structures based on polyhydroxybutyrate-co-valerate with a valerate content of 12% (PHBV12) containing a high barrier interlayer of electrospun zein nanofibers were developed. It was observed that the method used for the preparation of the outer PHBV12 layers affected their functional properties, since mechanical resistance increased and water vapour permeability and transparency decreased in the multilayer containing outer layers prepared by compression-moulding to a higher extent than for their counterparts obtained by casting. The addition of zein interlayer produced minimum changes in mechanical and optical film properties while the incorporation of the zein nanostructured interlayers significantly improved oxygen barrier properties of the multilayer films prepared by both processing technologies. However, the effect of the interlayer on the water vapour and limonene permeability depended on zein content. Thus, this approach provides an innovative way to develop fully renewable microbial biopolyester-based multilayer structures with enhanced barrier performance of significant interest in food packaging applications.
机译:在这项工作中,开发了基于戊酸酯含量为12%(PHBV12)的聚羟基丁酸酯-共-戊酸酯的多层结构,其中包含电纺玉米蛋白纳米纤维的高阻隔层。观察到,用于制备外部PHBV12层的方法影响了它们的功能性能,因为与通过压模法制备的包含外层的多层相比,机械抗性提高并且水蒸气渗透性和透明度降低,且程度更高通过铸造获得。玉米醇溶蛋白中间层的添加在机械和光学膜性质方面产生最小的变化,而玉米醇溶蛋白纳米结构化中间层的掺入显着改善了通过两种加工技术制备的多层膜的阻氧性。但是,中间层对水蒸气和柠檬烯渗透性的影响取决于玉米蛋白的含量。因此,这种方法提供了一种创新的方法来开发完全可再生的基于微生物生物聚酯的多层结构,具有增强的阻隔性能,在食品包装应用中引起了极大的关注。

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