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Homogeneous nucleation of n-nonane and n-propanol mixtures: A comparison of classical nucleation theory and experiments

机译:正壬烷和正丙醇混合物的均相成核:经典成核理论与实验的比较

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摘要

The homogeneous nucleation rates for n-nonane-n-propanol vapor mixtures have been calculated as a function of vapor-phase activities at 230 K using the classical nucleation theory (CNT) with both rigorous and approximate kinetic prefactors and compared to previously reported experimental data.The predicted nucleation rates resemble qualitatively the experimental results for low n-nonane gas phase activity.On the high nonane activity side the theoretical nucleation rates are about three orders of magnitude lower than the experimental data when using the CNT with the approximate kinetics.The accurate kinetics improves the situation by reducing the difference between theory and experiments to two orders of magnitude.Besides the nucleation rate comparison and the experimental and predicted onset activities,the critical cluster composition is presented.The total number of molecules is approximated by CNT with reasonable accuracy.Overall,the classical nucleation theory with rigorous kinetic prefactor seems to perform better.The thermodynamic parameters needed to calculate the nucleation rates are revised extensively.Up-to-date estimates of liquid phase activities using universal functional activity coefficient Dortmund method are presented together with the experimental values of surface tensions obtained in the present study.
机译:使用经典的成核理论(CNT)以及严格和近似的动力学因素,已经计算出了正壬烷-正丙醇蒸气混合物的均相成核速率与230 K下气相活性的关系,并与先前报道的实验数据进行了比较在低正壬烷气相活性下,预测的成核速率在质量上与实验结果相似。在高壬烷活性方面,当使用具有近似动力学的CNT时,理论成核速率比实验数据低约三个数量级。精确的动力学通过将理论与实验之间的差异减少到两个数量级来改善这种情况。除了成核速率比较以及实验和预测的起始活性外,还给出了关键的簇组成。通过CNT合理地估算分子总数精度。总体而言,具有严格动力学的经典成核理论预因子似乎表现更好。计算核化速率所需的热力学参数已被广泛修订。使用通用功能活度系数多特蒙德方法提供了最新的液相活度估算值,以及目前获得的表面张力的实验值研究。

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