Overall and specific migration from multilayer high barrier food contact materials – kinetic study of cyclic polyester oligomers migration

聚酯纤维 胶粘剂 食品接触材料 二甘醇 醋酸 聚氨酯 动力学 己二酸 邻苯二甲酸 食品包装 化学 材料科学 高分子化学 有机化学 乙二醇 图层(电子) 食品科学 物理 量子力学
作者
Sara Úbeda,Margarita Aznar,Paula Vera,Cristina Nerı́n,Luís Henriquez,Laura Taborda,Claudia Restrepo
出处
期刊:Food Additives & Contaminants: Part A [Informa]
卷期号:34 (10): 1784-1794 被引量:45
标识
DOI:10.1080/19440049.2017.1346390
摘要

Most multilayer high barrier materials used in food packaging have a polyurethane adhesive layer in their structures. In order to assess the safety of these materials, it is important to determine the compounds intentionally added to the adhesives (IAS) as well as those non-intentionally added substances (NIAS). During the manufacture of polyurethane adhesives, some by-products can be formed, such as cyclic polyester oligomers coming from the reaction between dicarboxylic acids and glycols. Since these compounds are not listed in the Regulation 10/2011/EU, they should not be found in migration above 0.01 mg/kg of simulant. In this study two flexible multilayer packaging materials were used and migration was evaluated in simulant A (ethanol 10% v/v), simulant B (acetic acid 3% w/v) and simulant ethanol 95% v/v during 10 days at 60ºC. Identification and quantification of non-volatile compounds was carried out by UPLC-MS-QTOF. Most of migrants were oligomers such as cyclic polyesters and caprolactam oligomers. Overall migration and specific migration of adipic acid-diethylene glycol and phthalic acid-diethylene glycol were monitored over time and analysed by UPLC-MS-TQ. In most cases, ethanol 95% v/v was the simulant with the highest concentration values. Overall migration kinetics followed a similar pattern than specific migration kinetics.
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