Effect of Corona Treatment Method to Carvacrol Nanocoating Process for Carvacrol/Halloysite-Nanotube/Low-Density-Polyethylene Active Packaging Films Development

A. Giannakas, V. K. Karabagias, Amarildo Ndreka, Aikaterini Dimitrakou, Areti A. Leontiou, Katerina Katerinopoulou, M. Karakassides, Charalampos Proestos, C. Salmas
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Abstract

Active food packaging incorporated with natural plant extracts as food preservatives, which will totally replace chemical preservatives gradually, are of major interest. Sequentially to our and other scientists’ previous work, in this paper we present the results of a study on the development of a novel active food packaging film based on the incorporation of a natural-halloysite/carvacrol-extract nanohybrid with the commercially used low-density polyethylene. The corona-treatment procedure was employed to incorporate a natural preservative on to the optimum final film. Packaging films are formatted with and without incorporation of natural-halloysite/carvacrol-extract nanohybrid and are coated externally, directly or via corona-treatment, with carvacrol essential oil. Mechanical, physicochemical, and preservation tests indicated that the low-density polyethylene incorporated perfectly with a natural-halloysite/carvacrol-extract nanohybrid. The extra external coating of the film with pure carvacrol extract using the corona-treatment technique led to approximately 100% higher Young Modulus values, slightly decreased ultimate strength by 20%, and exhibited almost stable elongation at break properties. The water vapor and oxygen properties were increased by 45 and 43%, correspondingly, compared to those of pure low-density polyethylene film. Finally, the antioxidant activity of the corona-treated film increased by 28% compared to the untreated film coated with carvacrol because of the controlled release rate of the carvacrol.
电晕处理法对香芹酚纳米涂层工艺在香芹酚/合金-纳米管/低密度聚乙烯活性包装膜开发中的影响
使用天然植物提取物作为食品防腐剂的活性食品包装将逐渐完全取代化学防腐剂,这一点备受关注。继我们和其他科学家之前的工作之后,我们在本文中介绍了一项关于开发新型活性食品包装薄膜的研究成果,该薄膜是在市售的低密度聚乙烯中加入了天然合金/香芹提取物纳米杂化物。采用电晕处理程序将天然防腐剂添加到最终的最佳薄膜中。包装膜的格式包括添加或不添加天然合金/香芹酚提取物纳米杂化物,并直接或通过电晕处理在外部涂上香芹酚精油。机械、理化和防腐测试表明,低密度聚乙烯与天然合金/香芹酚提取物纳米杂化物完美结合。使用电晕处理技术在薄膜外部额外涂上纯香芹酚提取物后,其杨氏模量值提高了约 100%,极限强度略微降低了 20%,断裂伸长率几乎保持稳定。与纯低密度聚乙烯薄膜相比,水蒸气和氧气性能分别提高了 45% 和 43%。最后,与涂有香芹酚的未处理薄膜相比,经过电晕处理的薄膜的抗氧化活性提高了 28%,这是因为香芹酚的释放率得到了控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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