Excess molar enthalpies, excess molar volumes, and vapour pressures of {x(trans-CHCl:CHCl) + (1-x)(CH2ClCH2Cl or CCl2:CCl2 or CHCl2CHCl2)}, {xCH2ClCH2Cl + (1-x)(CCl2:CCl2 or CHCl2CHCl2)}, and {xCCl2:CCl2 + (1-x)CHCl2CHCl2} were measured at the temperature 298.15 K. Activity coefficients and excess m
Excess molar enthalpies and excess molar volumes of xCFCl2CF2Cl+(1−x)CCl4, +(1−x)CHCl2CH3, +(1−x)CH2ClCH2Cl, +(1−x)CCl3CH3, and +(1−x)CHCl2CHCl2 at 298.15 K
✍ Scribed by Vladimír Dohnal; Donald Patterson
- Publisher
- Elsevier Science
- Year
- 1984
- Tongue
- English
- Weight
- 427 KB
- Volume
- 16
- Category
- Article
- ISSN
- 0021-9614
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📜 SIMILAR VOLUMES
Excess molar volumes at the temperature 298.15 K of the ternary mixtures: , and of the binary mixtures: , and {xCH3(CH2)5OH + (1-x)Cl(CH2)5CH3} were determined using a densimeter. All the experimental values were compared with the results obtained by empirical expressions for estimating ternary pr
## Excess molar volumes at CH2 )n-2CH3}, (n= 10 or n = 12), and {xCH3(CH2)3CH2Cl + (1x)CH3(CH2)n-2CH3}, (n= 10 or n = 12), were determined using a densimeter Anton Paar DMA 60/602. All the experimental values were compared with the results obtained by empirical expressions for estimating ternar
Excess molar enthalpies at the temperature 298.15 K were measured for CH2)n-2CH3}, (n = 10, 12), using a Calvet microcalorimeter. The experimental results were compared with those calculated by using the Nitta-Chao, UNIFAC I, and UNIFAC II models.
Excess molar volumes at the temperature 298.15 K were measured for , and {xCH3(CH2)4 CH3 +(1x)CH3(CH2)3OH}. Excess molar volumes were determined using an Anton Paar DMA 60/602 densimeter. The experimental values obtained in this work were compared with results obtained using methods which estimate
Excess molar enthalpies at the temperature 298.15 K were measured for CH2)nCH3} (n = 9, 12), and {x2CH3(CH2)4CH3 + (1-x2)CH3(CH2)n-2CH3} (n=9, 12), using a Calvet microcalorimeter. The experimental results were compared with those calculated by using the Nitta-and-Chao model.