Densities of (2-butanol plus n-hexane plus 1-butylamine) at T=298.15 and T=313.15 K:: excess and partial excess molar volumes and application of the ERAS model

被引:0
作者
Domínguez, M [1 ]
Gascón, L [1 ]
Valén, A [1 ]
Royo, FM [1 ]
Urieta, JS [1 ]
机构
[1] Univ Zaragoza, Fac Ciencias, Dept Quim Organ Quim Fis, Area Quim Fis,Secc Quim, E-50009 Zaragoza, Spain
关键词
density; excess molar volume; partial excess molar volume; ERAS model; 2-butanol; n-hexane; 1-butylamine; ternary mixture;
D O I
暂无
中图分类号
O414.1 [热力学];
学科分类号
摘要
Densities of {xCH(3)CH(OH)CH2CH3 + (1 - x)CH3(CH2)(4)CH3} at T = 298.15 K and T = 313.15 K, (xCH(3)CH(OH)CH2CH3 + (1 - x)CH3(CH2)(3)NH2) at T = 313.15 K, {xCH(3)(CH2)(4)CH3 + (1 - x)CH3(CH2)(3)NH2} at T = 298.15 K, and {x(1)CH(3)CH(OH) CH2CH3 + x(2)CH(3)(CH2)(4)CH3 + (1 - x(1) - x(2))CH3(CH2)(3)NH2} at T = 298.15 K and T = 313.15 K, have been measured. From these densities, excess molar volumes were calculated and fitted to the Redlich-Kister equation for the binary mixtures and to the Jasinski, Cibulka, Singh, Pintos and Calvo equations, for the ternary system. The partial excess molar volumes of each component in the mixtures have been determined. Several methods for the prediction of excess properties of multicomponent systems from binary systems data have been tested. Finally, the ERAS model has been used at T = 298.15 K to predict the excess molar volume of the ternary mixture. Qualitatively, the ERAS model gives an adequate representation of this system, with the shapes of both experimental and predicted curves being similar. (C) 2000 Academic Press.
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页码:1551 / 1568
页数:18
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