III. Study of critical and maximum temperatures of coexistence of liquid and gas phase in hydrocarbons binary mixtures of aromatic hydrocarbons with alkanes and cycloalkanes
Form of the phase diagrams in the coordinates “temperature-density”, critical and maximum temperature of liquid and vapor phases coexistence for binary mixtures (n-C5, n-C6, n-C8, n-C11)+benzene, n-C5+toluene and н-C5+2-methylbiphenyl were determined by isochoric method. Their interrelation with the...
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Published in | Fluid phase equilibria Vol. 377; pp. 56 - 75 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Elsevier B.V
15.09.2014
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Abstract | Form of the phase diagrams in the coordinates “temperature-density”, critical and maximum temperature of liquid and vapor phases coexistence for binary mixtures (n-C5, n-C6, n-C8, n-C11)+benzene, n-C5+toluene and н-C5+2-methylbiphenyl were determined by isochoric method. Their interrelation with the difference of the critical temperatures of components forming the mixture was determined. The prediction method was developed and tested using own experimental and literature data on critical and maximum temperatures of binary mixtures of aromatic hydrocarbons with alkanes and cycloalkanes. |
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AbstractList | Form of the phase diagrams in the coordinates "temperature-density", critical and maximum temperature of liquid and vapor phases coexistence for binary mixtures (n-C5, n-C6, n-C8, n-C11)+benzene, n-C5 +toluene and [ETH]1/2-C5 +2-methylbiphenyl were determined by isochoric method. Their interrelation with the difference of the critical temperatures of components forming the mixture was determined. The prediction method was developed and tested using own experimental and literature data on critical and maximum temperatures of binary mixtures of aromatic hydrocarbons with alkanes and cycloalkanes. Form of the phase diagrams in the coordinates “temperature-density”, critical and maximum temperature of liquid and vapor phases coexistence for binary mixtures (n-C5, n-C6, n-C8, n-C11)+benzene, n-C5+toluene and н-C5+2-methylbiphenyl were determined by isochoric method. Their interrelation with the difference of the critical temperatures of components forming the mixture was determined. The prediction method was developed and tested using own experimental and literature data on critical and maximum temperatures of binary mixtures of aromatic hydrocarbons with alkanes and cycloalkanes. |
Author | Nazmutdinov, Alyanus G. Sosin, Sergey E. Nesterova, Tatyana N. Vostrikov, Sergey V. Nesterov, Igor A. |
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Cites_doi | 10.1021/cr60294a001 10.1021/i160004a013 10.1039/tf9605600479 10.1021/je00019a002 10.1016/j.fluid.2014.02.008 10.1021/je9501548 10.1021/ie50483a030 10.1021/i160042a018 10.1134/S0965544106060089 10.1039/tf9716701605 10.1021/je9701083 10.1016/j.fluid.2014.02.010 10.1134/S1990793110080038 |
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References | Nazmutdinov, Sarkisova, Vodenkova (bib0030) 2006; 46 Tsonopoulos, Ambrose (bib0080) 1995; 40 Partington, Rowlinson, Weston (bib0010) 1960; 56 Nesterova, Vostrikov, Nesterov, Nazmutdinov (bib0035) 2014; 368 Douglas, Constantine (bib0050) 1996; 40 Thomas, Daubert (bib0055) 1996; 41 Nesterova, Nesterov (bib0045) 2009 Lide, Kehiaian (bib0065) 2000 Glanville, Sage, Lacey (bib0005) 1950; 42 Hicks, Young (bib0025) 1975; 75 Repkin, Nesterova, Nesterov, Naumkin (bib0060) 2010; 4 Yukihiro Higashi (bib0075) 1997; 42 Nesterova, Vostrikov, Nesterov, Nazmutdinov (bib0040) 2014; 368 Hicks, Young (bib0015) 1971; 67 Silverman, Thodos (bib0085) 1962; 1 Reid, Prausnitz, Sherwood (bib0070) 1982 Pak, Kay (bib0020) 1972; 11 Nesterova (10.1016/j.fluid.2014.06.020_bib0035) 2014; 368 Lide (10.1016/j.fluid.2014.06.020_bib0065) 2000 Hicks (10.1016/j.fluid.2014.06.020_bib0015) 1971; 67 Partington (10.1016/j.fluid.2014.06.020_bib0010) 1960; 56 Nazmutdinov (10.1016/j.fluid.2014.06.020_bib0030) 2006; 46 Pak (10.1016/j.fluid.2014.06.020_bib0020) 1972; 11 Douglas (10.1016/j.fluid.2014.06.020_bib0050) 1996; 40 Reid (10.1016/j.fluid.2014.06.020_bib0070) 1982 Nesterova (10.1016/j.fluid.2014.06.020_bib0045) 2009 Glanville (10.1016/j.fluid.2014.06.020_bib0005) 1950; 42 Thomas (10.1016/j.fluid.2014.06.020_bib0055) 1996; 41 Silverman (10.1016/j.fluid.2014.06.020_bib0085) 1962; 1 Hicks (10.1016/j.fluid.2014.06.020_bib0025) 1975; 75 Tsonopoulos (10.1016/j.fluid.2014.06.020_bib0080) 1995; 40 Nesterova (10.1016/j.fluid.2014.06.020_bib0040) 2014; 368 Repkin (10.1016/j.fluid.2014.06.020_bib0060) 2010; 4 Yukihiro Higashi (10.1016/j.fluid.2014.06.020_bib0075) 1997; 42 |
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SubjectTerms | Alkanes Binary mixtures Critical density Critical temperature study Cycloalkanes Fluid dynamics Hydrocarbons Liquids Phase diagrams Phase equilibria Study of maximum temperatures of coexistence of liquid and gas phases Vapor–liquid equilibrium mixture |
Title | III. Study of critical and maximum temperatures of coexistence of liquid and gas phase in hydrocarbons binary mixtures of aromatic hydrocarbons with alkanes and cycloalkanes |
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