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  2. Dortmund Data Bank - Wikipedia

    en.wikipedia.org/wiki/Dortmund_Data_Bank

    The original reason for starting a vaporliquid phase equilibria data collection was the development [2] of the group contribution method UNIFAC which allows to estimate vapor pressures of mixtures. The DDB has since been extended to many other properties and has increased dramatically in size also because of intensive (German) government aid.

  3. Vapor–liquid equilibrium - Wikipedia

    en.wikipedia.org/wiki/Vaporliquid_equilibrium

    In thermodynamics and chemical engineering, the vaporliquid equilibrium (VLE) describes the distribution of a chemical species between the vapor phase and a liquid phase. The concentration of a vapor in contact with its liquid, especially at equilibrium , is often expressed in terms of vapor pressure , which will be a partial pressure (a ...

  4. Ammonia (data page) - Wikipedia

    en.wikipedia.org/wiki/Ammonia_(data_page)

    The table above gives properties of the vaporliquid equilibrium of anhydrous ammonia at various temperatures. The second column is vapor pressure in kPa. The third column is the density of the liquid phase. The fourth column is the density of the vapor. The fifth column is the heat of vaporization needed to convert one gram of liquid to vapor.

  5. UNIFAC - Wikipedia

    en.wikipedia.org/wiki/UNIFAC

    The activity of a real chemical is a function of the thermodynamic state of the system, i.e. temperature and pressure. Equipped with the activity coefficients and a knowledge of the constituents and their relative amounts, phenomena such as phase separation and vapour-liquid equilibria can be calculated. UNIFAC attempts to be a general model ...

  6. Ethanol (data page) - Wikipedia

    en.wikipedia.org/wiki/Ethanol_(data_page)

    Liquid properties Std enthalpy change of formation, Δ f H o liquid: −277.38 kJ/mol Standard molar entropy, S o liquid: 159.9 J/(mol K) Enthalpy of combustion, Δ c H o: −1370.7 kJ/mol Heat capacity, c p: 112.4 J/(mol K) Gas properties Std enthalpy change of formation, Δ f H o gas: −235.3 kJ/mol Standard molar entropy, S o gas: 283 J ...

  7. O-Xylene (data page) - Wikipedia

    en.wikipedia.org/wiki/O-Xylene_(data_page)

    Vapor-liquid Equilibrium for o-Xylene/m-Xylene [8] P = 26.66 kPa BP Temp. ... "NIST Standard Reference Database". National Institute of Standards and Technology.

  8. Acetic acid (data page) - Wikipedia

    en.wikipedia.org/wiki/Acetic_acid_(data_page)

    Liquid properties Std enthalpy change of formation Δ f H o liquid: −483.5 kJ/mol Standard molar entropy S o liquid: 158.0 J/(mol K) Enthalpy of combustion, Δ c H o –876.1 kJ/mol Heat capacity c p: 123.1 J/(mol K) Gas properties Std enthalpy change of formation Δ f H o gas –438.1 kJ/mol Standard molar entropy S o gas: 282.84 J/(mol K ...

  9. Chloroform (data page) - Wikipedia

    en.wikipedia.org/wiki/Chloroform_(data_page)

    Vapor-liquid Equilibrium for Chloroform/Ethanol [6] P = 101.325 kPa BP Temp. ... "NIST Standard Reference Database". National Institute of Standards and Technology.