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Molecular Dynamics Simulation on the Diffusion of Flavor O2 and H2O Molecules in LDPE Film

机译:LDPE薄膜中香气O2和H2O分子扩散的分子动力学模拟

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摘要

The diffusion of five flavor organic molecules, including D-limonene, myrcene, ethyl hexanoate, 2-nonanone, and linalool in low density polyethylene (LDPE) film were investigated by combined experimental and molecular dynamics (MD) simulation studies. The diffusion coefficients derived from the prediction model, experimental determination, and MD simulation were compared, and the related microscopic diffusion mechanism was investigated. The effects of the presence of the flavor organic molecules on the diffusion of O and H O in polyethylene (PE) were also studied by MD simulation. Results show that: The diffusion of five flavor molecules in LDPE is well followed to Fick’s second law by the immersion experiment; MD simulation indicates the dual mode diffusion mechanism of the flavor molecules is in LDPE; the diffusion coefficients from MD simulation are close to those from the experimental determination, but are slightly larger than those values; the presence of the flavor organic molecules hinders the diffusion of O and H O, which can be well explained from the fraction of free volume ( ) and interaction energy calculation results derived from MD simulation.
机译:通过结合实验和分子动力学(MD)模拟研究,研究了五种风味有机分子,包括D-柠檬烯,月桂烯,己酸乙酯,2-壬酮和芳樟醇在低密度聚乙烯(LDPE)膜中的扩散。比较了由预测模型,实验确定和MD模拟得出的扩散系数,并研究了相关的微观扩散机理。还通过MD模拟研究了调味有机分子的存在对聚乙烯和聚乙烯中O和H O扩散的影响。结果表明:通过浸没实验,LDPE中的5种风味分子的扩散遵循了Fick的第二定律。 MD模拟表明风味剂分子的双模扩散机制在LDPE中。 MD模拟的扩散系数接近于实验确定的扩散系数,但略大于这些值。风味有机分子的存在会阻碍O和H O的扩散,这可以通过自由体积()的分数以及MD模拟得出的相互作用能计算结果很好地解释。

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