Excess molar enthalpies H E m and excess molar volumes V E m have been determined for (butane+propan-1-ol) at temperatures (298.15, 323.15, and 348.15) K and at pressures (5, 10, and 15) MPa. The H E m results and the excess molar heat capacity C E p,m are positive, while V E m (x) is s-shaped, chan
Comparison of excess molar enthalpies and excess molar volumes as a function of temperature and pressure for mixtures of (ethane, propane, and butane) with (methanol, ethanol, propan-1-ol, and butan-1-ol)
โ Scribed by J.B. Ott; P.R. Brown; J.T. Sipowska
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 793 KB
- Volume
- 28
- Category
- Article
- ISSN
- 0021-9614
No coin nor oath required. For personal study only.
โฆ Synopsis
Measurements of the excess molar enthalpies H E m as a function of pressure and temperature have now been completed for all of the binary mixtures of ethane, propane, and butane with methanol, ethanol, propan-1-ol, and butan-1-ol. Excess molar volumes V E m were also obtained for selected systems. This paper summarizes the results obtained and compares the effect of molar mass, temperature, and pressure on
)T , and C E p,m . The effect of (fluid+fluid) equilibria on H E m is described. The UNIFAC-II prediction of H E m is also compared with the experimental results. The effect of molar mass of the alkane and the alkanol, temperature, and pressure are qualitatively explained by a model that includes contributions to H E m and V E m by a positive hydrogen bonding term and a negative packing term. The hydrogen bonding term is most important at high mole fraction of alkane and is dependent on temperature and the molar mass of the alkane. The packing term is most important at low mole fraction of alkane and is dependent on the molar masses of the alkane and the alkanol, temperature, and pressure. The packing term increases in importance in liquid (alkane+alkanol) mixtures as the temperature approaches the critical temperature of the alkane, and becomes large and at temperatures where the alkane is a supercritical fluid.
๐ SIMILAR VOLUMES
The excess molar enthalpies H E m have been measured for mixtures of pyrrolidin-2-one with methanol, or ethanol, or propan-1-ol, or butan-1-ol, or pentan-1-ol over the whole composition range at T = 303.15 K. The H E m values are positive for all the mixtures over the whole mole fraction range excep
Excess molar enthalpies H E m and excess molar volumes V E m have been determined for (propane+propan-1-ol) at a temperature T=348.15 K and pressures p=(5, 10, and 15) MPa. Large and positive H E m with a large positive temperature coefficient (excess molar heat capacity) C E p,m are explained in te
Excess molar heat capacities and excess molar volumes determined at the temperature 298.15 K are reported for binary mixtures of (propan-2-ol, or butan-2-ol, or pentan-2-ol, or pentan-3-ol, or 2-methylbutan-2-ol + n-heptane). Excess molar heat capacities show a curve with an inflection point at x (a
Excess molar enthalpies H E m and excess molar volumes V E m have been determined for (2-methylpropane + 2-methylpropene), (2-methylpropane + propan-2-ol), and (2-methylpropene +propan-2-ol) at the temperatures (298.15 and 323.15) K and at the pressures (5, 10, and 15) MPa. For (alkane + alkene), H