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Migration from food packaging containing a functional barrier: Mathematical and experimental evaluation

机译:从具有功能障碍的食品包装中迁移:数学和实验评估

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A model for predicting the functional barrier properties of layered films based on Fickian diffusion is presented along with experimental migration data from layered poly(ethylene terephthalate) films (PET) to test the model. Three-layered coextruded PET films were produced in which the center layer contained model solutes/contaminants and the outer layers were made with virgin material. The contaminants in the center layer were toluene and chlorobenzene. The PET films, which were 400 mu m thick, had barrier layers of 20, 30, 40, and 60 mu m of virgin coextruded PET. The center or core layer had thicknesses between 360 and 280 mu m. The amount of migration was measured into water, 3% acetic acid, and isooctane at temperatures up to 60 degrees C. The measured amount of migration through the different barrier thicknesses was predictable on the basis of the model presented. The effects of diffusion from the center layer to a virgin barrier layer during the coextrusion process must be considered if reliable predictions of migration are to be obtained. [References: 22]
机译:提出了一种基于菲克扩散的预测层状薄膜功能阻挡性能的模型,以及来自层状聚对苯二甲酸乙二醇酯薄膜(PET)的实验迁移数据以测试该模型。制成三层共挤出PET薄膜,其中中间层包含模型溶质/污染物,而外层则由纯净材料制成。中间层的污染物是甲苯和氯苯。该PET膜厚400μm,具有20、30、40和60μm的原始共挤出PET的阻挡层。中心或芯层的厚度在360至280μm之间。在高达60摄氏度的温度下,测量到水,3%乙酸和异辛烷中的迁移量。在不同的阻挡层厚度下,所测得的迁移量可根据所提供的模型进行预测。如果要获得可靠的迁移预测,必须考虑在共挤出过程中从中心层扩散到原始阻隔层的影响。 [参考:22]

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