Mechanical and Manufacturing Department, Engineering Faculty, Mondragon Unibertsitatea, Loramendi 4 Apdo. 23, 20500 Mondragon, Spain.
J Phys Chem B. 2012 Mar 8;116(9):2814-9. doi: 10.1021/jp209838m. Epub 2012 Feb 22.
In this work we have measured the molecular diffusion coefficient of the n-alkane binary series nC(i)-nC(6), nC(i)-nC(10), and nC(i)-nC(12) at 298 K and 1 atm and a mass fraction of 0.5 by using the so-called sliding symmetric tubes technique. The results show that the diffusion coefficient at this concentration is proportional to the inverse viscosity of the mixture. In addition, we have also measured the diffusion coefficient of the systems nC(12)-nC(6), nC(12)-nC(7), and nC(12)-nC(8) as a function of concentration. From the data obtained, it is shown that the diffusion coefficient of the n-alkane binary mixtures at any concentration can be calculated from the molecular weight of the components and the dynamic viscosity of the corresponding mixture at 50% mass fraction.
在这项工作中,我们使用所谓的滑动对称管技术测量了 n-烷烃二元系列 nC(i)-nC(6)、nC(i)-nC(10)和 nC(i)-nC(12)在 298 K 和 1 大气压以及质量分数为 0.5 时的分子扩散系数。结果表明,在该浓度下,扩散系数与混合物的逆粘度成正比。此外,我们还测量了系统 nC(12)-nC(6)、nC(12)-nC(7)和 nC(12)-nC(8)的扩散系数作为浓度的函数。从获得的数据可以看出,在任何浓度下,n-烷烃二元混合物的扩散系数都可以根据组分的分子量和相应混合物在 50%质量分数下的动态粘度来计算。