Chemical compounds with formula C3H8 in ThermoML

n-propane
Y. Miyano, O. Mitsuoka, H. Ikeda, A. Ouchi, T. Ono, K. Tsuchida and Y. Tateishi
Henry s Law Constants and Infinite Dilution Activity Coefficients of Propane, Propene, Butane, 2-Methylpropane, 1-Butene, 2-Methylpropene, trans-2-Butene, cis-2-Butene, 1,3-Butadiene, Dimethyl Ether, Chloroethane, and 1,1-Difluoroethane in 2-Methyl-3-buten-2-ol and 3-Methyl-3-buten-1-ol
J. Chem. Eng. DataYear: 2005Volume: 50Pages: 2106-2111.
Keywords: Henry's Law constants, infinite dilution activity coefficients, Propane, Propene, Butane, 2-Methylpropane, 1-Butene, 2-Methylpropene, trans-2-Butene, cis-2-Butene, 1,3-Butadiene, Dimethyl Ether, Chloroethane, and 1,1-Difluoroethane 2-Methyl-3-buteno
DOI: 10.1021/je050343i
ThermoML: http://trc.nist.gov/journals/jced/2005v50/i06/je050343i.xml
n-propane
Zhang, J. S., Lee, S.[Sangyong], Lee, J. W.[Jae W.]
Solubility of Sodium Dodecyl Sulfate near Propane and Carbon Dioxide Hydrate-Forming Conditions
J. Chem. Eng. DataYear: 2007Volume: 52Pages: 2480-2483.
DOI: 10.1021/je700427t
ThermoML: http://trc.nist.gov/journals/jced/2007v52/i06/je700427t.xml
n-propane
M. E. E. ]. Kandil and K. N. Marsh
Determination of the Relative Permittivity and Density within the Gas Phase and Liquid Volume Fraction Formed within the Two-Phase Region for (0.4026 CH4 + 0.5974 C3H8) with a Radio Frequency Re-entrant Cavity
J. Chem. Eng. DataYear: 2007Volume: 52Pages: 1660-1671.
DOI: 10.1021/je700053u
ThermoML: http://trc.nist.gov/journals/jced/2007v52/i05/je700053u.xml
n-propane
Y. Miyano, S. Uno, K. Tochigi, S. Kato and H. Yasuda
Henry s Law Constants and Infinite Dilution Activity Coefficients of Propane, Propene, Butane, 2-Methylpropane, 1-Butene, 2-Methylpropene, trans-2-Butene, cis-2-Butene, 1,3-Butadiene, Dimethylether, Chloroethane, 1,1-Difluoroethane, and Hexane in Tetrahydropyran
J. Chem. Eng. DataYear: 2007Volume: 52Pages: 2245-2249.
DOI: 10.1021/je700270d
ThermoML: http://trc.nist.gov/journals/jced/2007v52/i06/je700270d.xml
n-propane
X. Dong, M. Gong, Y. Zhang, J. Liu and J. Wu
Isothermal Vapor-Liquid Equilibria for 1,1-Difluoroethane (R152a) + Propane (R290) at Temperatures between (254.31 and 287.94) K
J. Chem. Eng. DataYear: 2010Volume: 55Pages: 2145-2148.
DOI: 10.1021/je900744x
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je900744x.xml
n-propane
S. N. Joung, H. Y. Shin, H. S. Kim and K.-P. Yoo
High-Pressure Vapor-Liquid Equilibrium Data and Modeling of Propane + Methanol and Propane + Ethanol Systems
Fluid Phase Equilib.Year: 2004Volume: 49Pages: 426-429.
Keywords: High-Pressure Vapor-Liquid Equilibrium
DOI: 10.1021/je0340506
ThermoML: http://trc.nist.gov/journals/jced/2004v49/i03/je0340506.xml
n-propane
M. Yasumoto, Y. Uchida, K. Ochi, T. Furuya and K. Otake
Critical Properties of Three Dimethyl Ether Binary Systems: Dimethyl Ether (RE-170) + Propane (HC-290), Butane (HC-600), and 2-Methyl Propane (HC-600A)
J. Chem. Eng. DataYear: 2005Volume: 50Pages: 596-602.
Keywords: critical temperature, critical pressure, critical density, DME, propane, butane, 2-methyl propane
DOI: 10.1021/je0496589
ThermoML: http://trc.nist.gov/journals/jced/2005v50/i02/je0496589.xml
n-propane
Kim, Y. S., Jang, J. H., Lim, B. D., Kang, J. W., Lee, C. S.
Solubility of mixed gases containing carbon dioxide in ionic liquids: Measurements and predictions
Fluid Phase Equilib.Year: 2007Volume: 256Pages: 70-74.
Keywords: experiment, calculation, ionic liquids, gases, vapor-liquid equilibria
DOI: 10.1016/j.fluid.2006.11.019
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2006.11.019.xml
n-propane
S. Horstmann, G. Birke and K. Fischer
Vapor-Liquid Equilibrium and Excess Enthalpy Data for the Binary Systems Propane + Dimethyl Ether and Propene + Dimethyl Ether at Temperatures from (298 to 323) K
J. Chem. Eng. DataYear: 2004Volume: 49Pages: 38-42.
Keywords: vapor-liquid equilibrium, experimental, propane, propene, dimethyl ether
DOI: 10.1021/je0301242
ThermoML: http://trc.nist.gov/journals/jced/2004v49/i01/je0301242.xml
n-propane
B. Breure, E. J. M. Straver, L. J. Florusse, M. P. W. M. Rijkers, I. G. Economou, F. M. Vargas and C. J. Peters
Phase Equilibria in Binary Mixtures of Propane and Phenanthrene: Experimental Data and Modeling with the GC-EoS
J. Chem. Eng. DataYear: 2011Volume: 56Pages: 1407-1413.
Keywords: Experimental, modeling, propane, phenanthrene, Group Contribution Equation of, State
DOI: 10.1021/je101058b
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je101058b.xml
n-propane
P. Naidoo, J. D. Raal and D. Ramjugernath
High-Pressure Vapor-Liquid Equilibrium Data for (Carbon Dioxide + Cyclopentanol) and (Propane + Cyclopentanol)
J. Chem. Eng. DataYear: 2010Volume: 55Pages: 196-200.
Keywords: VLE data, High-pressures, Supercritical gas solubility, Phase diagram determination
DOI: 10.1021/je900305m
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je900305m.xml
n-propane
Honda, Y., Sato, T,, Uematsu, M.
Critical parameters for propane determined by the image analysis
J. Chem. Thermodyn.Year: 2008Volume: 40Pages: 208-211.
DOI: 10.1016/j.jct.2007.06.021
ThermoML: http://trc.nist.gov/ThermoML/jct/j.jct.2007.06.021.xml
n-propane
C. Schwarz, M. Zamudio and J. H. Knoetze
Phase Equilibria of Long-Chain Carboxylic Acids in Supercritical Propane
J. Chem. Eng. DataYear: 2011Volume: 56Pages: 1116-1124.
DOI: 10.1021/je101077v
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je101077v.xml
n-propane
K. Tanaka, Y. Higashi, R. Akasaka, Y. Kayukawa and K. Fujii
Measurements of the Vapor-Liquid Equilibrium for the CO2 + R290 Mixture
J. Chem. Eng. DataYear: 2009Volume: 54Pages: 1029-1033.
DOI: 10.1021/je800938s
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je800938s.xml
n-propane
F. Martinez, A. Martin, I. Asencio and J. Rincon
Solubility of Anthracene in Sub- and Supercritical Propane
J. Chem. Eng. DataYear: 2010Volume: 55Pages: 1232-1236.
DOI: 10.1021/je900606g
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je900606g.xml
n-propane
Y. Miyano
Henry's constants and infinite dilution activity coefficients of propane, propene, butane, isobutene, 1-butene, isobutane, trans-2-butene and 1,3-butadiene in 1-propanol at T=(260 to 340) K
J. Chem. Thermodyn.Year: 2004Volume: 36Pages: 101-106.
Keywords: Data, Mixture, Henry's constant, Activity coefficient, 1-propanol, Gas stripping
DOI: 10.1016/2004miy0
ThermoML: http://trc.nist.gov/journals/jct/2004v36/i02/2004miy0.xml
n-propane
R. Akasaka, Y. Higashi, K. Tanaka, Y. Kayukawa and K. Fujii
Vapor liquid equilibrium measurements and correlations for the binary mixture of difluoromethane + isobutane and the ternary mixture of propane + isobutane + difluoromethane
Fluid Phase Equilib.Year: 2007Volume: 261Pages: 286-291.
Keywords: R-32, R-290, R-600a, Vapor liquid equilibrium, Correlation
DOI: 10.1016/j.fluid.2007.06.029
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2007.06.029.xml
n-propane
D. Seibt, K. Vob, S. Herrmann, E. Vogel and E. Hassel
Simultaneous Viscosity-Density Measurements on Ethane and Propane over a Wide Range of Temperature and Pressure Including the Near-Critical Region
J. Chem. Eng. DataYear: 2011Volume: 56Pages: 1476-1493.
DOI: 10.1021/je101178u
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je101178u.xml
n-propane
S.-X. Hou and Y. -Y. Duan
Isothermal vapor liquid equilibria for the pentafluoroethane + propane and pentafluoroethane + 1,1,1,2,3,3,3-heptafluoropropane systems
Fluid Phase Equilib.Year: 2010Volume: 290Pages: 121-126.
Keywords: Vapor liquid equilibrium (VLE), Peng Robinson equation of state (PR Eos), Mixing rules, Pentafluoroethane (R125), 1,1,1,2,3,3,3-Heptafluoropropane (R227ea), Propane (R290)
DOI: 10.1016/j.fluid.2009.09.008
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2009.09.008.xml
n-propane
H. Lin and Y. -Y. Duan
Surface Tension Measurements of Propane (R-290) and Isobutane (R-600a) from (253 to 333) K
J. Chem. Eng. DataYear: 2003Volume: 48Pages: 1360-1363.
Keywords: surface tension, vapor-liquid equilibrium, capillary rise
DOI: 10.1021/je034093m
ThermoML: http://trc.nist.gov/journals/jced/2003v48/i05/je034093m.xml
n-propane
Franceschi, E.[Elton], Kunita, M. H.[Marcos H.], Rubira, A. F.[Adley F.], Muniz, E. C.[Edvani Curti], Corazza, M. L.[Marcos L.], Oliveira, J. V., Dariva, C.[Claudio]
Phase Behavior of Binary and Ternary Systems Involving Carbon Dioxide, Propane, and Glycidyl Methacrylate at High Pressure
J. Chem. Eng. DataYear: 2006Volume: 51Pages: 686-690.
Keywords: phase equilibrium, binary, ternary, carbon dioxide, propane, glycidyl methacrylate,
DOI: 10.1021/je050453p
ThermoML: http://trc.nist.gov/journals/jced/2006v51/i02/je050453p.xml
n-propane
R. A. Perkins, J. C. S. Ochoa and J. W. Magee
Thermodynamic Properties of Propane. II. Molar Heat Capacity at Constant Volume from (85 to 345) K with Pressures to 35 MPa
J. Chem. Eng. DataYear: 2009Volume: 54Pages: 3192-3201.
DOI: 10.1021/je900137r
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je900137r.xml
n-propane
Y. Miyano
Henry's Constants and Infinite Dilution Activity Coefficients of Propane, Propene, Butane, Isobutane, 1-Butene, Isobutene, trans-2-Butene, and 1,3-butadiene in 2-propanol at 250-330 K
J. Chem. Eng. DataYear: 2004Volume: 49Pages: 368-371.
Keywords: Henry's Constant, infinite dilution, activity coefficient, alkene, alkane
DOI: 10.1021/je0342116
ThermoML: http://trc.nist.gov/journals/jced/2004v49/i02/je0342116.xml
n-propane
Nagata, Y., Mizutani, K., Miyamoto, H.
The precise measurement of the (vapour + liquid) equilibrium properties for (CO2 + isobutane) binary mixtures
J. Chem. Thermodyn.Year: 2011Volume: 43Pages: 244-247.
Keywords: Bubble point pressure, Dew point pressure, Measurement, Recirculation method, (Vapour + liquid) equilibrium, (CO2 + isobutane) binary mixture
DOI: 10.1016/j.jct.2010.09.004
ThermoML: http://trc.nist.gov/ThermoML/10.1016/j.jct.2010.09.004.xml
n-propane
Q. N. N. Ho, K. S. Yoo, B. G. Lee and J. S. Lim
Measurement of vapor liquid equilibria for the binary mixture of propylene (R-1270) + propane (R-290)
Fluid Phase Equilib.Year: 2006Volume: 245Pages: 63-70.
Keywords: Propane (R-290), Propylene (R-1270), Hydrocarbon mixture, Vapor liquid equilibria (VLE), Peng Robinson equation of state (PR-EOS)
DOI: 10.1016/j.fluid.2006.03.009
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2006.03.009.xml
n-propane
J. S. Lim, Q. N. N. Ho, J. -Y. Park and B. G. Lee
Measurement of Vapor-Liquid Equilibria for the Binary Mixture of Propane (R-290) + Isobutane (R-600a)
J. Chem. Eng. DataYear: 2004Volume: 49Pages: 192-198.
Keywords: vapor-liquid equilibria, binary mixture, propane, isobutane, Carnahan-Starling-De Santis equation
DOI: 10.1021/je030106k
ThermoML: http://trc.nist.gov/journals/jced/2004v49/i02/je030106k.xml
n-propane
S.-X. Hou and Y. -Y. Duan
Vapor-liquid equilibrium measurement and modeling for the difluoromethane + pentafluoroethane + propane ternary mixture
Fluid Phase Equilib.Year: 2010Volume: 298Pages: 106-112.
Keywords: Vapor liquid equilibrium (VLE), Mixture, Difluoromethane (R32), Pentafluoroethane (R125), Propane (R290)
DOI: 10.1016/j.fluid.2010.07.018
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2010.07.018.xml
n-propane
F. Martinez, A. Martin, R. Camarillo and J. Rincon
Measurement and Modeling of the Solubility of 9H-Carbazole in Sub- and Supercritical Propane
J. Chem. Eng. DataYear: 2011Volume: 56Pages: 956-962.
Keywords: Solubility, propane, carbazole, PAH, Peng-Robinson equation, Chrastil, equation
DOI: 10.1021/je100923d
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je100923d.xml
n-propane
Y. Park, J. Kang, J. Choi and H. Kim
Vapor-Liquid Equilibria for the 1,1-Difluoroethane (HFC-152a) + Propane (R-290) System
J. Chem. Eng. DataYear: 2007Volume: 52Pages: 1203-1208.
DOI: 10.1021/je060501l
ThermoML: http://trc.nist.gov/journals/jced/2007v52/i04/je060501l.xml
n-propane
X. Dong, M. Gong, J. Liu and J. Wu
Experimental measurement of vapor pressures and (vapor + liquid) equilibrium for {1,1,1,2-tetrafluoroethane (R134a) + propane (R290)} by a recirculation apparatus with view windows
J. Chem. Thermodyn.Year: 2011Volume: 43Pages: 505-510.
Keywords: Saturated vapor pressures, (Vapor + liquid) equilibrium, 1,1,1,2-Tetrafluoroethane, Propane
DOI: 10.1016/j.jct.2010.11.001
ThermoML: http://trc.nist.gov/ThermoML/10.1016/j.jct.2010.11.001.xml
n-propane
C. Coquelet, A. Chareton, A. Valtz, A. Baba-Ahmed and D. Richon
Vapor-Liquid Equilibrium Data for the Azeotropic Difluoromethane + Propane System at Temperatures from 294.83 to 343.26 K and Pressures up to 5.4 MPa
J. Chem. Eng. DataYear: 2003Volume: 48Pages: 317-323.
Keywords: VLE
DOI: 10.1021/je020115d
ThermoML: http://trc.nist.gov/journals/jced/2003v48/i02/je020115d.xml
n-propane
P. Naidoo, D. Ramjugernath and J. D. Raal
A new high-pressure vapour liquid equilibrium apparatus
Fluid Phase Equilib.Year: 2008Volume: 269Pages: 104-112.
DOI: 10.1016/j.fluid.2008.05.002
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2008.05.002.xml
n-propane
M. E. Kandil, K. N. Marsh and A. R. H. Goodwin
A re-entrant resonator for the measurement of phase boundaries: dew points for {0.4026CH4 + 0.5974C3H8}
J. Chem. Thermodyn.Year: 2005Volume: 37Pages: 684-691.
Keywords: reentrant resonator, methane, propane, relative permittivity, dew pressure, dew temperature
DOI: 10.1016/j.jct.2004.11.004
ThermoML: http://trc.nist.gov/journals/jct/2005v37/i07/j.jct.2004.11.004.xml
n-propane
P. Haimi, P. Uusi-Kyyny, J. -P. Pokki and V. Alopaeus
Infinite dilution activity coefficient and vapour liquid equilibrium measurements for dimethylsulphide and tetrahydrothiophene with hydrocarbons
Fluid Phase Equilib.Year: 2010Volume: 295Pages: 17-25.
Keywords: Infinite dilution activity coefficient, Sulphur compounds, VLE
DOI: 10.1016/j.fluid.2010.03.027
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2010.03.027.xml
n-propane
Y. Miyano
Henry's Constants and Infinite Dilution Activity Coefficients of Propane, Propene, Butane, Isobutane, 1-Butene, Isobutene, trans-2-Butene and 1,3-Butadiene in 1-Butanol and 2-Butanol at (250 to 330) K
J. Chem. Eng. DataYear: 2004Volume: 49Pages: 1285-1289.
Keywords: Henry's constant, Activity coefficients, Propane, Propene, Butane, Isobutane, 1-Butene, Isobutene, trans-2-Butene, 1, 3-Butadiene, 1-Butanol, 2-Butanol
DOI: 10.1021/je034265f
ThermoML: http://trc.nist.gov/journals/jced/2004v49/i05/je034265f.xml
n-propane
C. Jarne, F. Rivollet and D. Richon
PpT Data for Hydrogen Sulfide + Propane from (263 to 363) K at Pressures up to 40 MPa
J. Chem. Eng. DataYear: 2011Volume: 56Pages: 84-88.
DOI: 10.1021/je100851w
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je100851w.xml
n-propane
J. S. Lim, G. Seong and H.-K. Roh
Vapor-Liquid Equilibria for Propane (R-290) + 1,1,1,2,3,3,3-Heptafluoropropane (HFC-227ea) at Various Temperatures
J. Chem. Eng. DataYear: 2007Volume: 52Pages: 2250-2256.
DOI: 10.1021/je700271n
ThermoML: http://trc.nist.gov/journals/jced/2007v52/i06/je700271n.xml
n-propane
X.-J. Feng, Q. Liu, M.-X. Zhou and Y. -Y. Duan
Gaseous pvTx Properties of Mixtures of Carbon Dioxide and Propane with the Burnett Isochoric Method
J. Chem. Eng. DataYear: 2010Volume: 55Pages: 3400-3409.
DOI: 10.1021/je100148h
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je100148h.xml
n-propane
Y. Miyano, S. Ashimori, T. Otuka, T. Dairaku, T. Kitamoto, Y. Kume, Y. Tateishi, Y. Nishiguchi, R. Miura and T. Mitani
Henry's Law Constants and Infinite Dilution Activity Coefficients of Propane, Propene, Butane, 2-Methylpropane, 1-Butene, 2-Methylpropene, trans-2-Butene, cis-2-Butene, 1,3-Butadiene, Dimethyl Ether, Chloroethane, and 1,1-Difluoroethane in 2-Methylphenol, 3-Methylphenol, and 4-Methylphenol
J. Chem. Eng. DataYear: 2010Volume: 55Pages: 4956-4960.
DOI: 10.1021/je100529s
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je100529s.xml
n-propane
Miyamoto, H., Uematsu, M.
Saturated liquid densities of propane at T = (280 to 365) K
J. Chem. Thermodyn.Year: 2007Volume: 39Pages: 225-229.
Keywords: Correlation, Measurements, Propane, pqT property, Saturated liquid density
DOI: 10.1016/j.jct.2006.07.012
ThermoML: http://trc.nist.gov/ThermoML/jct/j.jct.2006.07.012.xml
n-propane
P. Tobaly, P. Marteau and V. Ruffier-Meray
High -Pressure Phase Diagrams of Propane + Decahydronaphthalene and Propane + Naphthalene Mixtures
J. Chem. Eng. DataYear: 2004Volume: 49Pages: 795-799.
Keywords: High-Pressure, Phase equilibria, liquid-vapor, molarity, concentration, mixture, propane, naphthalene, decalin, decahydronaphthalene, spectroscopy, spectrophotometry,
DOI: 10.1021/je0341458
ThermoML: http://trc.nist.gov/journals/jced/2004v49/i04/je0341458.xml
n-propane
J. S. Lim, J. -Y. Park, j. W. Kang and B. G. Lee
Measurement of vapor liquid equilibria for the binary systems of propane + 1,1,1,2-tetrafluoroethane and 1,1,1-trifluoroethane + propane at various temperatures
Fluid Phase Equilib.Year: 2006Volume: 243Pages: 57-63.
Keywords: Propane (R-290), HFC-134a, HFC-143a, Azeotropic mixture, Vapor liquid equilibria (VLE), Carnahan Starling De Santis equation of state (CSD EOS)
DOI: 10.1016/j.fluid.2006.02.016
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2006.02.016.xml
n-propane
D. E. Nanu, W. Poot, D. Geana and T. W. De Loos
Fluid Phase Equilibria of Binary n-Alkane + Squalane Systems
J. Chem. Eng. DataYear: 2003Volume: 48Pages: 571-575.
Keywords: Phase equilibria, Vapor-Liquid, Liquid-Liquid, Liquid-Liquid-Vapor, alkanes, squalane
DOI: 10.1021/je020127z
ThermoML: http://trc.nist.gov/journals/jced/2003v48/i03/je020127z.xml
n-propane
Miyamoto, H., Shigetoyo, K., Uematsu, M.
The (p, p, T,x) properties for {x propane + (1 - x) isobutane} with x =(1.0000, 0.2765, 0.5052, and 0.7468) in the temperature range from (280 to 440) K at pressures from (1 to 200) MPa
J. Chem. Thermodyn.Year: 2007Volume: 39Pages: 1423-1431.
Keywords: Excess molar volume, Measurement, Propane, Propane +isobutane binary mixture, PpTx property
DOI: 10.1016/j.jct.2007.03.012
ThermoML: http://trc.nist.gov/ThermoML/jct/j.jct.2007.03.012.xml
n-propane
J. Gregorowicz
Phase behaviour in the vicinity of the three-phase solid liquid vapour line in asymmetric nonpolar systems at high pressures
Fluid Phase Equilib.Year: 2006Volume: 240Pages: 29-39.
Keywords: Solid liquid vapour equilibria, Solid liquid equilibria, Liquid vapour equilibria, Asymmetric nonpolar systems, Thermodynamic analysis
DOI: 10.1016/j.fluid.2005.11.031
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2005.11.031.xml
n-propane
M. O. McLinden
Thermodynamic Properties of Propane. I. p-?-T Behavior from (265 to 500) K with Pressures to 36 MPa
J. Chem. Eng. DataYear: 2009Volume: 54Pages: 3181-3191.
DOI: 10.1021/je900124n
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je900124n.xml
n-propane
Y. Miyano, I. Fujihara and K. Sato
Henry s law constants of propane, propene, butane, and 2-methylpropane in methanol at 374-490K
Fluid Phase Equilib.Year: 2006Volume: 240Pages: 56-62.
Keywords: Experimental data, Henry s law constant, Solubility, Methanol, Propane, Propene, Butane, 2-Methylpropane
DOI: 10.1016/j.fluid.2005.12.001
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2005.12.001.xml
n-propane
Schwarz, C. E., Knoetze, J. H.
Phase equilibria of high molecular mass 1-alcohols in supercritical propane
Fluid Phase Equilib.Year: 2007Volume: 258Pages: 51-57.
Keywords: 1-alcohols, propane, supercritical, phase equilibrium
DOI: 10.1016/j.fluid.2007.04.027
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2007.04.027.xml
n-propane
S. Glos, R. Kleinrahm and W. Wagner
Measurement of the (p,rho,T) relation of propane, propylene, n-butane, and isobutane in the temperature range from (95 to 340) K at pressures up to 12 MPa using an accurate two-sinker densimeter
J. Chem. Thermodyn.Year: 2004Volume: 36Pages: 1037-1059.
Keywords: Propane, Propylene, n-Butane, Isobutane, Density measurements
DOI: 10.1016/j.jct.2004.07.017
ThermoML: http://trc.nist.gov/journals/jct/2004v36/i12/j.jct.2004.07.017.xml
n-propane
Lim, J. S.[Jong Sung], Park, J. -Y.[Ji-Young], Lee, K.-S., Kim, J. -D.[Jae-Duck], Lee, B. G.[Byung Gwon]
Measurement of Vapor-Liquid Equilibria for the Binary Mixture of Pentafluoroethane (HFC-125) + Propane (R-290)
J. Chem. Eng. DataYear: 2004Volume: 49Pages: 750-755.
Keywords: Vapor-Liquid Equilibria, f Pentafluoroethane (HFC-125), Propane (R-290)
DOI: 10.1021/je030156p
ThermoML: http://trc.nist.gov/journals/jced/2004v49/i04/je030156p.xml
n-propane
G. Zhao, S. Bi, J. Wu and Z. Liu
Surface Tension of Propane (R-290) + 1,1-Difluoroethane (R-152a) from (248 to 328) K
J. Chem. Eng. DataYear: 2010Volume: 55Pages: 3077-3079.
DOI: 10.1021/je901085t
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je901085t.xml
n-propane
Miyamoto, H., Uematsu, M.
The (p,q,T,x) properties of (x1 propane + x2 n-butane) with x1 = (0.0000, 0.2729, 0.5021, and 0.7308) over the temperature range from (280 to 440) K at pressures from (1 to 200) MPa
J. Chem. Thermodyn.Year: 2008Volume: 40Pages: 240-247.
DOI: 10.1016/j.jct.2007.06.014
ThermoML: http://trc.nist.gov/ThermoML/jct/j.jct.2007.06.014.xml
n-propane
Y. Kayukawa, M. Hasumoto, Y. Kano and K. Watanabe
Liquid-Phase Thermodynamic Properties for Propane (1), n-Butane (2), and Isobutane (3)
J. Chem. Eng. DataYear: 2005Volume: 50Pages: 556-564.
Keywords: Thermodynamic Properties, Propane, n-Butane, Isobutane
DOI: 10.1021/je049672l
ThermoML: http://trc.nist.gov/journals/jced/2005v50/i02/je049672l.xml
n-propane
M.-H. Chuang and M. Johannsen
Solubilities and Adsorption Equilibria of beta-Carotene in Supercritical and Near-Critical Fluids
J. Chem. Eng. DataYear: 2011Volume: 56Pages: 1770-1777.
DOI: 10.1021/je100229f
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je100229f.xml
n-propane
R. M. Charin, M. L. Corazza, P. M. Ndiaye, A. A. Rigo, M. A. Mazutti and J. V. Oliveira
Phase equilibrium data and thermodynamic modelling of the system (propane + DMF + methanol) at high pressures
J. Chem. Thermodyn.Year: 2011Volume: 43Pages: 413-419.
Keywords: Phase equilibrium, High pressure, Propane, DMF, Methanol
DOI: 10.1016/j.jct.2010.10.014
ThermoML: http://trc.nist.gov/ThermoML/10.1016/j.jct.2010.10.014.xml
n-propane
G. Seong, K.-P. Yoo and J. S. Lim
Vapor-Liquid Equilibria for Propane (R290) + n-Butane (R600) at Various Temperatures
J. Chem. Eng. DataYear: 2008Volume: 53Pages: 2783-2786.
DOI: 10.1021/je800377b
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je800377b.xml
n-propane
Y. Miyano, A. Kimura, M. Kuroda, A. Matsushita, A. Yamasaki, Y. Yamaguchi, A. Yoshizawa and Y. Tateishi
Henry's Law Constants and Infinite Dilution Activity Coefficients of Propane, Propene, Butane, 2-Methylpropane, 1-Butene, 2-Methylpropene, trans-2-Butene, cis-2-Butene, 1,3-Butadiene, Dimethyl Ether, Chloroethane, and 1,1-Difluoroethane in Benzene, Toluene, o-Xylene, m-Xylene, p-Xylene, and Styrene
J. Chem. Eng. DataYear: 2007Volume: 52Pages: 291-297.
DOI: 10.1021/je060395n
ThermoML: http://trc.nist.gov/journals/jced/2007v52/i01/je060395n.xml
n-propane
Miyamoto, H., Koshi, T., Uematsu, M.
The (p, rho, T, x) properties for (propane + n-butane + isobutane) ternary mixtures over the temperature range from (280 to 440) K at pressures from (1 to 200) MPa
J. Chem. Thermodyn.Year: 2008Volume: 40Pages: 558-566.
DOI: 10.1016/j.jct.2007.12.001
ThermoML: http://trc.nist.gov/ThermoML/jct/j.jct.2007.12.001.xml
n-propane
Houssin-Agbomson, D.[Deborah], Coquelet, C.[Christophe], Arpentinier, P., Delcorso, F.[Fabrice], Richon, D.[Dominique]
Equilibrium Data for the Oxygen + Propane Binary System at Temperatures of (110.22, 120.13, 130.58, and 139.95) K
J. Chem. Eng. DataYear: 2010Volume: 55Pages: 4412-4415.
DOI: 10.1021/je100574y
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je100574y.xml
n-propane
A. Yamaguchi, M. Mukoubayashi, T. Matsunami and H. Sato
p-rho-Tx Property Measurements Near Saturation in the Gaseous Phase for Propane + Isobutane
J. Chem. Eng. DataYear: 2009Volume: 54Pages: 3273-3275.
DOI: 10.1021/je900244c
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je900244c.xml
n-propane
Y. Miyano
Henry's constants and infinite dilution activity coefficients of propane, propene, butane, isobutane, 1-butene, isobutene, trans-2-butene, and 1,3-butadiene in 1-pentanol, 2-pentanol and 3-pentanol
J. Chem. Thermodyn.Year: 2005Volume: 37Pages: 459-465.
Keywords: Experimental data, Mixture, Henry's constant, Activity coefficient, 1-pentanol, 2-pentanol, 3-pentanol
DOI: 10.1016/j.jct.2004.11.005
ThermoML: http://trc.nist.gov/journals/jct/2005v37/i05/j.jct.2004.11.005.xml
n-propane
S. Bi, X. Li, G. Zhao and J. Wu
Surface tension of dimethyl ether + propane from 243 to 333 K
Fluid Phase Equilib.Year: 2010Volume: 298Pages: 150-153.
Keywords: Binary mixture refrigerant, RE170 + R290, Surface tension
DOI: 10.1016/j.fluid.2010.07.026
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2010.07.026.xml
n-propane
P. Hegel, G. Mabe, M. S. Zabaloy, S. Pereda and E. A. Brignole
Liquid-Liquid-Supercritical Fluid Equilibria for Systems Containing Carbon Dioxide, Propane, and Triglycerides
J. Chem. Eng. DataYear: 2009Volume: 24Pages: 2085-2089.
DOI: 10.1021/je800995r
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je800995r.xml
n-propane
J. H. Kim and M. S. Kim
Vapor liquid equilibria for the carbon dioxide + propane system over a temperature range from 253.15 to 323.15K
Fluid Phase Equilib.Year: 2005Volume: 238Pages: 13-19.
Keywords: Vapor liquid equilibria, Peng Robinson EoS, Alternative refrigerant, Carbon dioxide, Propane
DOI: 10.1016/j.fluid.2005.09.006
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2005.09.006.xml
n-propane
Kayukawa, Y.[Yohei], Fujii, K., Higashi, Y.[Yukihiro]
Vapor-Liquid Equilibrium (VLE) Properties for the Binary Systems Propane (1) + n-Butane (2) and Propane (1) + Isobutane (3)
J. Chem. Eng. DataYear: 2005Volume: 50Pages: 579-582.
Keywords: vapor-liquid equilibrium, propane, butane, isobutane
DOI: 10.1021/je0496701
ThermoML: http://trc.nist.gov/journals/jced/2005v50/i02/je0496701.xml
n-propane
Y. Miyano
Henry's constants and infinite dilution activity coefficients of propane, propene, butane, isobutane, 1-butene, isobutene, trans-2-butene, and 1,3-butadiene in isobutanol and tert-butanol
J. Chem. Thermodyn.Year: 2004Volume: 36Pages: 865-869.
Keywords: Data, Mixture, Henry s constant, Activity coefficient, Isobutanol, tert-Butanol
DOI: 10.1016/2004miy2
ThermoML: http://trc.nist.gov/journals/jct/2004v36/i10/2004miy2.xml
n-propane
kitajima, H., Kagawa, N., Tsuruno, S.[Seizou], Wantanabe, K.
Isochoric Heat Capacities of Propane+Isobutane Mixtures at Temperatures from 280 to 420K and at Pressures to 30MPa1
Int. J. Thermophys.Year: 2005Volume: 26Pages: 1733-1742.
Keywords: critical region, density, heat capacity, isobutane, mixtures, propane, pvTx property.
DOI: 10.1016/2005kitkag0
ThermoML: http://trc.nist.gov/ThermoML/ijt/2005kitkag0.xml
n-propane
Gozalpour, F., Al-Saleh, I., Tohidi, B., Danesh, A., Todd, A. C.
Experimental data on binary and ternary mixtures of perfluoro-1,3-dimethylcyclohexane with normal alkanes at 373.15 K
Fluid Phase Equilib.Year: 2010Volume: 297Pages: 138-141.
Keywords: Tracer, Perfluorocarbons, Fluid sampling, Oil-based mud, Contamination
DOI: 10.1016/j.fluid.2010.06.017
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2010.06.017.xml
n-propane
Y. Miyano
Henry's Law Constants and Infinite Dilution Activity Coefficients of Propane, Propene, Butane, 2-Methylpropane, 1-Butene, 2-Methylpropene, trans-2-Butene, cis-2-Butene, 1,3-Butadiene, Dimethyl Ether, Chloroethane, and 1,1-Difluoroethane in 2-Propen-1-ol
J. Chem. Eng. DataYear: 2005Volume: 50Pages: 2045-2048.
Keywords: Experimental data, Mixture, Henry's constant, Activity coefficient, 2-propene-1-ol
DOI: 10.1021/je0502647
ThermoML: http://trc.nist.gov/journals/jced/2005v50/i06/je0502647.xml
n-propane
J. Im, G. Lee, M. S. Shin, J. Lee and H. Kim
Vapor liquid equilibria of the 1,1,1-trifluoroethane (HFC-143a) + propane (HC-290) system
Fluid Phase Equilib.Year: 2006Volume: 248Pages: 19-23.
Keywords: Vapor liquid equilibria, 1,1,1-Trifluoroethane (HFC-143a), Propane (HC-290)
DOI: 10.1016/j.fluid.2006.06.022
ThermoML: http://trc.nist.gov/ThermoML/fpe/j.fluid.2006.06.022.xml
n-propane
H. Hong, M. Gong and J. Wu
Solubility Measurements of 1,1,1,2-Tetrafluoroethane (R134a) and of Propane in Squalane at Temperatures from (325 to 400) K and Pressures from (0.1 to 1) MPa
J. Chem. Eng. DataYear: 2006Volume: 51Pages: 2270-2273.
DOI: 10.1021/je060330k
ThermoML: http://trc.nist.gov/journals/jced/2006v51/i06/je060330k.xml
n-propane
K. Tanaka and Y. Higashi
Measurements of the Surface Tension for the R290 + R32 Mixture
J. Chem. Eng. DataYear: 2009Volume: 54Pages: 1656-1659.
DOI: 10.1021/je800756r
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je800756r.xml
n-propane
Cristancho, D. E.[Diego E.], Mantilla, I. D.[Ivan D.], Coy, L. A., Tibaduiza, A.[Andrea], Ortiz-Vega, D. O.[Diego O.], Hall, K. R.[Kenneth R.]
Accurate P-rho-T Data and Phase Boundary Determination for a Synthetic Residual Natural Gas Mixture
J. Chem. Eng. DataYear: 2011Volume: 56Pages: 826-832.
DOI: 10.1021/je100500t
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je100500t.xml
n-propane
D. Ramjugernath, A. Valtz, C. Coquelet and D. Richon
Isothermal Vapor-Liquid Equilibrium Data for the Hexafluoroethane (R116) + Propane System at Temperatures from (263 to 323) K
J. Chem. Eng. DataYear: 2009Volume: 54Pages: 1292-1296.
DOI: 10.1021/je800849s
ThermoML: http://trc.nist.gov/ThermoML/10.1021/je800849s.xml
n-propane
Y. Kayukawa, M. Hasumoto, Y. Kano and K. Watanabe
Liquid-Phase Thermodynamic Properties for the Binary and Ternary Systems of Propane (1), n-Butane (2), and Isobutane (3)
J. Chem. Eng. DataYear: 2005Volume: 50Pages: 565-578.
Keywords: vapor pressure, density, bubble-point pressure, propane, butane, isobutane
DOI: 10.1021/je049671t
ThermoML: http://trc.nist.gov/journals/jced/2005v50/i02/je049671t.xml
n-propane
X. Dong, M. Gong, J. Liu and J. Wu
Isothermal (vapour + liquid) equilibrium for the binary {1,1,2,2-tetrafluoroethane (R134) + propane (R290)} and {1,1,2,2-tetrafluoroethane (R134) + isobutane (R600a)} systems
J. Chem. Thermodyn.Year: 2010Volume: 42Pages: 1152-1157.
Keywords: (Vapour + liquid) equilibrium, 1,1,2,2-Tetrafluoroethane, Propane, Isobutane
DOI: 10.1016/j.jct.2010.04.016
ThermoML: http://trc.nist.gov/ThermoML/10.1016/j.jct.2010.04.016.xml
n-propane
B. G. Lee, W.-J. Yang and J. S. Lim
Vapor-Liquid Equilibria for the Binary System Difluoromethane (HFC-32) + Propane (HC-290) at Seven Temperatures [(268.15, 278.15, 283.15, 288.15, 298.15, 308.15, and 318.15) K]
J. Chem. Eng. DataYear: 2003Volume: 48Pages: 841-846.
Keywords: VLE, binary system, difluoromethane, propane
DOI: 10.1021/je020154p
ThermoML: http://trc.nist.gov/journals/jced/2003v48/i04/je020154p.xml


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