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High pressure carbon dioxide for impregnation of clove essential oil in LLDPE films

机译:用于丁香薄膜丁香精油的高压二氧化碳

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High-pressure carbon dioxide (CO2) impregnation is a promising technology in the development of active packaging films. Clove essential oil (CEO), a multicomponent active agent naturally rich in eugenol, was incorporated in linear low density polyethylene (LLDPE) films by using high pressure CO2 impregnation. The parameters of temperature (25, 35 and 45 degrees C), pressure (150 and 250 bar) and CEO:CO2 mass ratio (2 and 10%) were screened using a variable-volume view cell for 4 h to determine the best impregnation conditions. Kinetic assays of CEO impregnation were also performed. The highest amount of CEO (40.2 mg g(-1) of LLDPE) impregnated was obtained at 10% CEO:CO2 mass ratio, 45 degrees C and 150 bar. The impregnation at 2 h showed advantage in reducing processing time. A preferential eugenol impregnation was observed due to thermodynamic interactions and mass transfer phenomena. Thermal and mechanical properties of LLDPE films remained stable after high pressure processing. Industrial relevance: The development of innovative technologies for active packaging systems has attracted the interest of food, pharmaceutical, and chemical industries. The consumer's demand for products with low healthy risk makes the CEO an advantageous active agent for packaging development purposes, besides possessing strong antimicrobial and antioxidant activities. The employment of high pressure CO2 allowed a homogeneous CEO impregnation in LLDPE films without damaging mechanical and thermal properties of the polymer matrix, which is important for industrial applications. The CEO-impregnated LLDPE films have potential use in antimicrobial and antioxidant packaging systems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:高压二氧化碳(CO2)浸渍是在主动包装膜的发展中的一个有前途的技术。 Clove精油(CeO),通过使用高压CO 2浸渍在线性低密度聚乙烯(LLDPE)膜中掺入了一种天然富含丁醇的多组分活性剂。使用可变体积视图细胞筛选温度(25,35和45℃),压力(150和250℃),压力(150和250级)和CO 2质量比(2和10%)4小时以确定最佳浸渍状况。还进行了CEO浸渍的动力学测定。获得最多的CEO(40.2mg(-1)的LLDPE)浸渍,得到10%CEO:CO 2质量比,45℃和150巴。在2小时时浸渍显示在减少处理时间方面的优势。由于热力学相互作用和传质现象,观察到优先的丁烯醇浸渍。高压加工后LLDPE薄膜的热和力学性能保持稳定。工业相关性:积极包装系统创新技术的发展吸引了食品,制药和化学工业的兴趣。消费者对健康风险低的产品的需求使CEO成为包装开发目的的有利活性剂,除了具有强烈的抗微生物和抗氧化活性。高压CO2的就业允许在LLDPE薄膜中均匀的CEO浸渍,而不会损坏聚合物基质的机械和热性能,这对于工业应用很重要。 CEO浸渍的LLDPE薄膜具有抗微生物和抗氧化包装系统的潜在用途。 (c)2017 Elsevier Ltd.保留所有权利。

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