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Two-phase molecular dynamics model to simulate the migration of additives from polypropylene material to food

机译:两相分子动力学模型,模拟添加剂从聚丙烯材料到食品的迁移

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摘要

Migration of chemical additives from polypropylene material to food simulants (50% ethanol solution and isooctane) at the temperature of 293, 313 and 343 K are investigated by using molecular dynamics (MD) simulation technique based on the classical mechanics. A two-phase MD model is firstly established to simulate the migration dynamic process. The migration dynamic details are obtained, especially for the significant kinetic parameter of diffusion coefficient. The accuracy of MD simulation is assessed by comparing the diffusion coefficients obtained by MD simulations, experiments and Piringer model. It is indicated that the diffusion coefficients of additives obtained from two-phase MD model are generally within one order of magnitude of the corresponding experiments. The two-phase MD model of polypropylene – food simulant offers fairly good predictive ability, which means MD simulation technique is a powerful way to predict the migration process and level of additives from polypropylene material to food. In addition, different influencing factors for additive migration are examined including the additive molecular structure, interaction energy between additive molecule and polypropylene, food simulant and temperature. The movement trajectories of additives in polypropylene – food simulant cells at different simulation time suggest that the additive molecules vibrate rather than hopping for a long time, until they find the equal or larger transport channel to diffuse.
机译:利用经典力学上的分子动力学(MD)模拟技术,研究了化学添加剂在293、313和343 K温度下从聚丙烯材料到食品模拟物(50%乙醇溶液和异辛烷)的迁移。首先建立了两阶段的MD模型来模拟迁移动态过程。获得了迁移动力学细节,尤其是对于扩散系数的重要动力学参数。 MD仿真的准确性是通过比较MD仿真,实验和Piringer模型获得的扩散系数来评估的。结果表明,从两相MD模型获得的添加剂的扩散系数通常在相应实验的一个数量级内。聚丙烯–食品模拟物的两相MD模型具有相当好的预测能力,这意味着MD模拟技术是预测添加剂从聚丙烯材料到食品的迁移过程和含量的有力方法。此外,考察了添加剂迁移的不同影响因素,包括添加剂分子结构,添加剂分子与聚丙烯之间的相互作用能,食品模拟物和温度。聚丙烯-食品模拟单元中添加剂在不同模拟时间的运动轨迹表明,添加剂分子会振动而不是长时间跳动,直到它们找到相等或更大的传输通道扩散为止。

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  • 作者单位

    Packaging Engineering Institute, Jinan University,Key Laboratory of Product Packaging and Logistics of Guangdong Higher Education Institutes, Jinan University,Zhuhai Key Laboratory of Product Packaging and Logistics, Jinan University;

    Packaging Engineering Institute, Jinan University,Key Laboratory of Product Packaging and Logistics of Guangdong Higher Education Institutes, Jinan University,Zhuhai Key Laboratory of Product Packaging and Logistics, Jinan University;

    Packaging Engineering Institute, Jinan University,Key Laboratory of Product Packaging and Logistics of Guangdong Higher Education Institutes, Jinan University,Zhuhai Key Laboratory of Product Packaging and Logistics, Jinan University;

    Key Laboratory of Product Packaging and Logistics of Guangdong Higher Education Institutes, Jinan University,Zhuhai Key Laboratory of Product Packaging and Logistics, Jinan University,Department of Food Science and Engineering, Jinan University;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Two-phase molecular dynamics model; Migration; Diffusion coefficient; Additive; Polypropylene;

    机译:两相分子动力学模型迁移扩散系数添加剂聚丙烯;

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