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 inFluid phase equilibria Vol. 377; pp. 56 - 75
Main Authors Vostrikov, Sergey V., Nesterova, Tatyana N., Nesterov, Igor A., Sosin, Sergey E., Nazmutdinov, Alyanus G.
Format Journal Article
LanguageEnglish
Published 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.
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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Keywords Study of maximum temperatures of coexistence of liquid and gas phases
Alkanes
Critical temperature study
Critical density
Vapor–liquid equilibrium mixture
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Snippet Form of the phase diagrams in the coordinates “temperature-density”, critical and maximum temperature of liquid and vapor phases coexistence for binary...
Form of the phase diagrams in the coordinates "temperature-density", critical and maximum temperature of liquid and vapor phases coexistence for binary...
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StartPage 56
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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