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Experimental and theoretical study of polypropylene: Antioxidant migration with different food simulants and temperatures

机译:聚丙烯的实验和理论研究:不同食物模拟物和温度下的抗氧化剂迁移

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摘要

Polypropylene is a synthetic plastic widely used in industry due to its low price and convenience. Although its wide applications, serious safety issues have been raised about toxic chemicals such as butylated hydroxytoluene (BHT) and pentaerythritol tetrakismethylene-(3,5-di-tert-butyl-4-hydroxyhydrocinnamate) (Irganox 1010) which may migrate from polypropylene packaging into foods. Here, the effects of severe processing conditions [autoclave heating (121 degrees C), microwave radiation (700 W), and freezer storage ( - 30 degrees C)] on migration behavior were confirmed. Mathematical models were used to estimate the migration behavior of these compounds, and the results were compared with data from real experimental analyses which were performed by high-performance liquid chromatography. Overall, the estimated values from the mathematical model were 1.5-2 times larger than the experimental values for all conditions, suggesting that the mathematical migration models provide reliable predictions of migration. Taken together, computational assessment of migration behavior may be an effective way to decrease the time and expense of food safety evaluations.
机译:聚丙烯因其价格低廉和方便而被广泛用于工业中。尽管其用途广泛,但有关有毒化学品的严重安全问题仍然存在,例如丁基化羟基甲苯(BHT)和季戊四醇四亚甲基-(3,5-二叔丁基-4-羟基氢化肉桂酸酯)(Irganox 1010),它们可能会从聚丙烯包装中迁移出来。进入食物。在此,证实了苛刻的加工条件[高压釜加热(121摄氏度),微波辐射(700瓦)和冷藏室(-30摄氏度)]对迁移行为的影响。使用数学模型估算了这些化合物的迁移行为,并将结果与​​通过高效液相色谱进行的实际实验分析得到的数据进行了比较。总体而言,数学模型的估计值是所有条件下实验值的1.5-2倍,这表明数学迁移模型可提供可靠的迁移预测。两者合计,对迁移行为的计算评估可能是减少食品安全评估时间和费用的有效方法。

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