首页> 外文期刊>Journal of Molecular Liquids >Application of the extended real associated solution theory to excess molar enthalpies and excess molar volumes of binary mixtures of (benzene or 1-alkanol plus quinoline)
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Application of the extended real associated solution theory to excess molar enthalpies and excess molar volumes of binary mixtures of (benzene or 1-alkanol plus quinoline)

机译:扩展的实相关解理论在过量的摩尔焓和过量的摩尔体积(苯或1-链烷醇加喹啉)的二元混合物中的应用

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摘要

Excess molar enthalpies and excess molar volumes of binary mixtures of (benzene or methanol or ethanol or 1-propanol or 1-butanol+quinoline) as a function of composition at a pressure of 1 arm and a temperature of 298.15 K have been used to test the Extended Real Solution Theory, ERAS, of nonelectrolyte solutions.The ERAS theory accounts for free volume effects according to the Flory-Patterson theory and for association effects: self and cross-association between the molecules involved. The ERAS theory results for the binary mixtures (benzene or an alkanol+quinoline) indicates strong hydrogen bonding effects between unlike molecules given by the predicted hydrogen bonding energy between two dissimilar compounds. Comparison is also made between the chemical and physical contribution to the ERAS theory.The Extended Real Associated Solution theory describes the published V-m(E) data better than the published H-m(E) data. (c) 2005 Published by Elsevier B.V.
机译:在1臂压力和298.15 K的温度下,过量的摩尔焓和过量的摩尔体积的二元混合物(苯或甲醇或乙醇或1-丙醇或1-丁醇+喹啉)作为组成的函数已用于测试非电解质溶液的扩展实溶液理论ERAS.ERAS理论根据Flory-Patterson理论解释了自由体积效应以及缔合效应:涉及分子之间的自缔合和交叉缔合。对二元混合物(苯或链烷醇+喹啉)的ERAS理论结果表明,由两种不同化合物之间的预测氢键能给出的不同分子之间具有很强的氢键效应。还对ERAS理论的化学和物理贡献进行了比较。扩展的实际缔合溶液理论比已发布的H-m(E)数据更好地描述了已发布的V-m(E)数据。 (c)2005年由Elsevier B.V.

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