Liquid-vapor and Solid-liquid-vapor Equilibrium in Natural Gas Systems

Liquid-vapor and Solid-liquid-vapor Equilibrium in Natural Gas Systems
Title Liquid-vapor and Solid-liquid-vapor Equilibrium in Natural Gas Systems PDF eBook
Author E. D. Sloan
Publisher
Pages 101
Release 1983
Genre Thermodynamic equilibrium
ISBN

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Liquid-vapor and Solid-liquid-vapor Equilibrium in Natural Gas Systems

Liquid-vapor and Solid-liquid-vapor Equilibrium in Natural Gas Systems
Title Liquid-vapor and Solid-liquid-vapor Equilibrium in Natural Gas Systems PDF eBook
Author E. Dendy Sloan
Publisher
Pages 101
Release 1986*
Genre Carbon dioxide
ISBN

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There were two major objectives for the work. The first objective was the experimental measurement and thermodynamic modeling of ternary vapor liquid equilibria of carbon dioxide systems of interest to the natural gas industry. The second objective was the measurement and thermodynamic modeling of solid-liquid-vapor phase behavior in binary carbon dixide systems.

Liquid-vapor and Solid-liquid-vapor Phase Equilibria in Natural Gas Systems

Liquid-vapor and Solid-liquid-vapor Phase Equilibria in Natural Gas Systems
Title Liquid-vapor and Solid-liquid-vapor Phase Equilibria in Natural Gas Systems PDF eBook
Author A. J. Kidnay
Publisher
Pages 35
Release 1984
Genre Natural gas
ISBN

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Solid-liquid-vapor phase equilibria were measured for the binary systems carbon dioxide plus methane, carbon dioxide plus ethane, and carbon dioxide plus propane over the temperature region 204 to 216 K. Vapor-liquid phase equilibria were measured for carbon dioxide plus methane at 212 K, carbon dioxide plus ethane at 204, 209, and 212 K, and carbon dioxide plus propane at 216 K.

Liquid-vapor Equilibria for Ternary Natural Gas Systems

Liquid-vapor Equilibria for Ternary Natural Gas Systems
Title Liquid-vapor Equilibria for Ternary Natural Gas Systems PDF eBook
Author Colorado School of Mines
Publisher
Pages 83
Release 1982
Genre Chemical equilibria
ISBN

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Vapor-liquid equilibria were measured for the binary systems methane + carbon dioxide at 230, 250, and 270 K; methane + ethane at 210, 230, 270 K; and ethane + carbon dioxide at 210, 213, 230, 250 K. The ternary stystem methane + ethane + carbon dioxide was studied at 230 K over the pressure range 1.15 MPa to 6.59 MPa. The Peng-Robinson equation of state was used to model the experimental data with an accuracy sufficient for most engineering calculations Preliminary studies were made of the solid-liquid-vapor equilibria for the binary systems methane + carbon dioxide and ethane + carbon dioxide.

Crystal-Liquid-Gas Phase Transitions and Thermodynamic Similarity

Crystal-Liquid-Gas Phase Transitions and Thermodynamic Similarity
Title Crystal-Liquid-Gas Phase Transitions and Thermodynamic Similarity PDF eBook
Author Vladimir P. Skripov
Publisher John Wiley & Sons
Pages 183
Release 2006-12-13
Genre Science
ISBN 3527607528

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Professor Skripov obtained worldwide recognition with his monograph "Metastable liquids", published in English by Wiley & Sons. Based upon this work and another monograph published only in Russia, this book investigates the behavior of melting line and the properties of the coexisting crystal and liquid phase of simple substances across a wide range of pressures, including metastable states of the coexisting phases. The authors derive new relations for the thermodynamic similarity for liquid-vapour phase transition, as well as describing solid-liquid, liquid-vapor and liquid-liquid phase transitions for binary systems employing the novel methodology of thermodynamic similarity.

Vapour–Liquid Equilibrium

Vapour–Liquid Equilibrium
Title Vapour–Liquid Equilibrium PDF eBook
Author Eduard Hála
Publisher Elsevier
Pages 624
Release 2013-10-22
Genre Technology & Engineering
ISBN 1483160866

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Vapor-Liquid Equilibrium, Second Edition covers the theoretical principles and methods of calculation of equilibrium conditions from various experimental data and the elements of measuring technique, as well as the instruments for the direct determination of the equilibrium compositions of the liquid and vapor phases of the system. The book discusses the relations necessary for the thermodynamic treatment of the equilibrium between the liquid and vapor phase of a system; the concept of an ideal solution and auxiliary thermodynamic functions; and the activity and the activity coefficient. The text also describes vapor-liquid equilibrium in real systems (electrolytes and non-electrolytes) and in systems whose components (i.e. temperature, pressure, and composition of phases) mutually react according to several stoichiometric equations. The criteria of purity of substances and the methods of measuring temperature; low, medium, and high pressures; the pressures of the saturated vapors at given temperatures; and the boiling points at given pressures used in laboratory work in the field of vapor-liquid equilibrium are considered. The book also tackles the methods for the direct determination of equilibrium data (distillation, circulation, static, dew and bubble point, and flow methods). The text concludes with a review of the literature on the systems whose vapor-liquid equilibrium data had been measured and reported to the beginning of 1954. Workers in the chemical industry who deal with problems of distillation and rectification will find the book useful.

Liquid-vapor Equilibria for Ternary Natural Gas Systems

Liquid-vapor Equilibria for Ternary Natural Gas Systems
Title Liquid-vapor Equilibria for Ternary Natural Gas Systems PDF eBook
Author A. J. Kidnay
Publisher
Pages 53
Release 1981
Genre Natural gas
ISBN

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Vapor liquid equilibrium (VLE) data were measured for the nitrogen + carbon dioxide binary system at 220 and 240K and for the methane + carbon dioxide system at 219.26, 240, and 270K. Ternary VLE measurements were made for the system N2 + CH4 + CO2 at 220K and 6.080, 9.119 and 12.159 MPa, and 240K at 7.093, 9.119 and 12.159 MPa. The multifluid reference corresponding states method proposed by Teja and Rice was applied to VLE calculations and the results of this method for the binary and ternary systems were compared with the results of the Lee-Kesler corresponding states correlation and the Peng-Robinson equation of state. The multifluid and Lee-Kesler methods give comparable results for the constituent binaries of the N2 + CH4 + CO2 system. However, the multifluid model predictions for the ternary system were superior to the predictions of the Lee-Kesler method. The Peng-Robinson equation of state was found to be better than both corresponding states methods for both binary and ternart system VLE predictions. None of the methods produced good representation near the critical points of the binary and ternary systems.