Thermodynamics Research Center / ThermoML | Fluid Phase Equilibria

Experimental determination and calculation of thermodynamic properties of CO2 + octane to high temperatures and high pressures

Yu, J.[Jinglin], Wang, S.[Shujun], Tian, Y.[Yiling]
Fluid Phase Equilib. 2006, 246, 1-2, 6-14
ABSTRACT
The phase behavior and critical points of carbon dioxide + octane are determined from 313 to 393 K, and their molar volumes and densities are measured both in the subcritical and supercritical (SC) regions using a variable-volume autoclave in this study. The critical curve of carbon dioxide + octane has been predicted with an equation of state (EOS) by Heilig and Franck, in which a repulsion term and a square-well potential attraction term for intermolecular interaction has been used. To use the pairwise combination rule for the square-well molecular interaction potential, three adjustable parameters are required. The thermodynamic properties including mole fractions, densities and molar volumes of this system are also calculated using the Heilig Franck, the Peng Robison (PR) and the Peng Robinson Stryjek Vera (PRSV) equation of state. Among the equations of state, the Heilig Franck equation of state has been found to have the best correlation with binary vapor liquid equilibrium data of the carbon dioxide + octane system.
Compounds
# Formula Name
1 C8H18 octane
2 CO2 carbon dioxide
Datasets
The table above is generated from the ThermoML associated json file (link above). POMD and RXND refer to PureOrMixture and Reaction Datasets. The compound numbers are included in properties, variables, and phases, if specificied; the numbers refer to the table of compounds on the left.
Type Compound-# Property Variable Constraint Phase Method #Points
  • POMD
  • 1
  • 2
  • Critical pressure, kPa ; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • visual observation through viewing glass
  • 5
  • POMD
  • 1
  • 2
  • Critical temperature, K ; Liquid
  • Mole fraction - 2; Liquid
  • Liquid
  • Gas
  • Visual observation in a stirred cell
  • 5
  • POMD
  • 1
  • 2
  • Vapor or sublimation pressure, kPa ; Liquid
  • Mole fraction - 2; Liquid
  • Temperature, K; Liquid
  • Liquid
  • Gas
  • CCELL:UFactor:16
  • 47
  • POMD
  • 1
  • 2
  • Mass density, kg/m3 ; Gas
  • Temperature, K; Gas
  • Mole fraction - 2; Liquid
  • Gas
  • Liquid
  • dividing mass by volume
  • 47
  • POMD
  • 1
  • 2
  • Mass density, kg/m3 ; Liquid
  • Temperature, K; Liquid
  • Mole fraction - 2; Liquid
  • Liquid
  • Gas
  • dividing mass by volume
  • 47
  • POMD
  • 1
  • 2
  • Mole fraction - 2 ; Gas
  • Mole fraction - 2; Liquid
  • Temperature, K; Liquid
  • Gas
  • Liquid
  • Gas volume after depressurization
  • 47