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相对湿度对二苯甲酮从纸板向 Tenax®食品模拟物迁移的影响及其建模。

Effect of relative humidity on the migration of benzophenone from paperboard into the food simulant Tenax® and modelling hereof.

机构信息

DTU Food, National Food Institute, Danish Technical University, Søborg, Denmark.

出版信息

Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 2013;30(2):395-402. doi: 10.1080/19440049.2012.741717. Epub 2012 Nov 15.

Abstract

The aim of this study was to investigate the effect of relative humidity on the migration of benzophenone from paperboard into the food simulant Tenax®. Kinetic migration investigations were carried out with three relative humidities in the interval between 39% and >73%. All investigations were carried out at a constant temperature of 34°C. It was found that the migration of benzophenone after more than 30 days was 4.8 times higher at a relative humidity of 64%-71%, and 7.3 times higher at a relative humidity of >73%, compared with that at a relative humidity of 39%-49%. Diffusion and partition coefficients were derived from the results by using a software for modelling migration in multilayer materials. Both the diffusion coefficient and the partition coefficient, between paperboard and Tenax®, decrease with increasing relative humidity. The experimental results were correctly modelled only when the paperboard was regarded as a one-layer system as compared with a two-layer system: where the main part of the paperboard (B1) has a high diffusion rate and a thin part of the paperboard (B2) in contact with the foodstuff has a lower diffusion rate.

摘要

本研究旨在探究相对湿度对苯并三唑从纸板向 Tenax®食品模拟物迁移的影响。在 39%至>73%的区间内,通过三种相对湿度进行了动力学迁移研究。所有研究均在 34°C 的恒定温度下进行。结果发现,在相对湿度为 64%-71%时,苯并三唑的迁移量在 30 天以上时比相对湿度为 39%-49%时高 4.8 倍,而在相对湿度>73%时则高 7.3 倍。通过使用用于模拟多层材料迁移的软件,从结果中得出了扩散和分配系数。扩散系数和分配系数均随相对湿度的增加而降低。仅当将纸板视为单层系统而非双层系统时,实验结果才能被正确模拟:与食品接触的纸板的较薄部分(B2)具有较高的扩散率,而纸板的主要部分(B1)具有较低的扩散率。

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