/PPEPPD2019-data

Work materials for the All About Data workshop at PPEPPD-2019

Primary LanguageJupyter Notebook

PPEPPD2019-data

Binder Work materials for the All About Data workshop at PPEPPD-2019

Getting started

This project is designed to work well with the MyBinder platform.
For those who clone the archive to a local machine, they will have the option of connecting to a local installation of REFPROP; otherwise, cached computations in pickle files will provide the necessary visualization support.

Literature sources

  • Gilliland, E.R.; Scheeline, H.W.
    High-Pressure Vapor-Liquid Equilibrium. For the Systems Propylene-Isobutane and Propane + Hydrogen Sulfide.
    Ind. Eng. Chem., 1940, 32, 48-54
    DOI: 10.1021/ie50361a009
  • Steckel, F.
    Vapor-liquid equilibria of some binary systems containing hydrogen sulfide under pressure.
    Sven. Kem. Tidskr., 1945, 57, 209-216
  • Rambosek, G.M.
    Liquid-vapor equilibrium composition relationships in the propane-hydrogen sulfide systems.
    Ph.D. Thesis, Ohio State University, Columbus, OH (1950)
  • Kay, W. B.; Rambosek, G. M.
    Liquid-Vapor Equilibrium Relations in Binary Systems. Propane-Hydrogen Sulfide Systems.
    Ind. Eng. Chem., 1953, 45, 221-226
    DOI: 10.1021/ie50517a065
  • Brewer, J.
    Phase equilibria of the propane - hydrogen sulfide system from the cricondondentherm to the solid-liquid-vapor locus.
    Ph.D. Thesis, Univ. Kansas, Lawrence, KA (1960)
  • Brewer, J.; Rodewald, N.; Kurata, F.
    Phase equilibria of the propane-hydrogen sulphide system from the cricondontherm to the solid-liquid-vapor region.
    AIChE J., 1961, 7, 13-16
  • Robinson Jr., R.L.; Jacoby, R.H.
    Better Compressibility Factors.
    Hydrocarbon Proc. Petr. Refiner., 1965, 44, 141-145
  • Jou, F.-Y.; Carroll, J.J.; Mather, A.E.
    Azeotropy and critical behavior in the system propane-hydrogen sulfide.
    Fluid Phase Equilib., 1995, 109, 235-244
    DOI: 10.1016/0378-3812(95)02721-p
  • Lobo, L.Q.; Ferreira, A.G.M.; Fonseca, I.M.A.; Senra, A.M.P.
    Vapour pressure and excess Gibbs free energy of binary mixtures of hydrogen sulphide with ethane, propane, and n-butane at temperature of 182.33 K.
    J. Chem. Thermodyn., 2006, 38, 1651-1654
    DOI: 10.1016/j.jct.2006.03.013
  • Jarne, C.; Rivollet, F.; Richon, D.
    PρT Data for Hydrogen Sulfide + Propane from (263 to 363) K at Pressures up to 40 MPa.
    J. Chem. Eng. Data, 2011, 56, 84-88
    DOI: 10.1021/je100851w
  • Dicko, M.; Coquelet, C.; Theveneau, P.; Mougin, P.
    Phase Equilibria of H2S-Hydrocarbons (Propane, n-Butane, and n-Pentane) Binary Systems at Low Temperatures.
    J. Chem. Eng. Data, 2012, 57, 1534-1543
    DOI: 10.1021/je300111m

Authors

  • Kenneth Kroenlein - Primary authorship of this repository
  • Ala Bazyleva - Materials around data presentation in the literature
  • Kurt Schmidt - Materials around industrial modeling and application
  • John P O'Connell - General contributions

All authors consulted significantly on all components

License

This project is the product of the National Institute of Standards and Technology, and is therefore not subject to copyright in the US.