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A second order group contribution method for the prediction of critical temperatures and enthalpies of vaporization of organic compounds

机译:用于预测有机化合物的临界温度和蒸发焓的二阶基团贡献法

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摘要

A new method based on group contribution additivity, and using Benson's second order groups, is proposed for the prediction of critical temperatures and enthalpies of vaporization of covalent compounds. Contributions for hydrocarbons and hydrocarbon derivatives containing oxygen, nitrogen, chlorine, bromine and/or sulphur, are given. Results are compared to predictions made using the most common existing first or second order group contribution methods. The overall precision for T-c predictions of 381 compounds is 5.8 K. compared to 23.6 K with the method of Joback and 9.2 K with the method of Constantinou. The precision for predicted Delta H-vap of 319 compounds, at 298 K and at the normal boiling point, is improved by a factor 2 when comparing to the results of the method of Svoboda. Furthermore, one single group decomposition may now be used for the computation of gas phase properties, T-c and Delta H-vap at any temperature lower than T-c, leading to liquid phase thermochemical functions with better precision and simplicity. (c) 2006 Elsevier B. V. All rights reserved.
机译:提出了一种基于基团贡献加和并使用Benson二阶基团的新方法,用于预测临界温度和共价化合物的蒸发焓。给出了对含氧,氮,氯,溴和/或硫的烃和烃衍生物的贡献。将结果与使用最常见的现有一阶或二阶组贡献方法得出的预测进行比较。 T-c预测的381种化合物的总精度为5.8 K,而Joback方法为23.6 K,Constantinou方法为9.2K。与Svoboda方法的结果相比,在298 K和正常沸点下预测的319种化合物的Delta H-vap的精度提高了2倍。此外,现在可以使用一个单组分解来计算在低于T-c的任何温度下的气相性质T-c和Delta H-vap,从而获得具有更好的精度和简便性的液相热化学功能。 (c)2006 Elsevier B. V.保留所有权利。

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