High pressure phase behaviour of multicomponent fluid mixtures /
The high pressure phase behaviour of binary fluid mixtures has been extensively studied during the last three decades. There is ample experimental data for a wide variety of binary mixtures and extensive methods for prediction have been developed. In contrast, the investigation of ternary and other...
Clasificación: | Libro Electrónico |
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Autor principal: | |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
Amsterdam ; New York : New York, NY, USA :
Elsevier ; Distributors for the U.S. and Canada, Elsevier Science Pub. Co.,
1992.
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Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Front Cover; High Pressure Phase Behaviour of Multicomponent Fluid Mixtures; Copyright Page; Dedication; Preface; Table of Contents; Notation; Chapter 1. SURVEY OF THE HIGH PRESSURE PHASE BEHAVIOUR OF FLUIDS; 1.1 Introduction; 1.2 Phase Behaviour of Binary Fluids; 1.3 Phase Behaviour of Ternary and Multicomponent Fluids; References; Chapter 2. THE THERMODYNAMICS OF PHASE EQUILIBRIA; 2.1 Criteria for Equilibrium; 2.2 Coexistent Phases; 2.3 The Phase Rule; 2.4 Criteria For Phase Stability; 2.5 Critical Phases; 2.6 Consequences For Phase Equilibria Calculations; References.
- Chapter 3. MODELS FOR HIGH PRESSURE MULTICOMPONENT EQUILIBRIA3.1 The Phase Integral; 3.2 Computer Simulation; 3.3 Conformal Solution Theory; 3.4 Perturbation Theories; 3.5 Equations of State; 3.6 Mixing Rules For Multicomponent Equilibria; 3.7 An Analytic Description of Attractive Forces in Binary Fluid Mixtures; 3.8 Equations of State Calculations; References; Chapter 4. PROCEDURE FOR DETERMINING THE PHASE BEHAVIOUR OF TERNARY MIXTURES: COMPARISON OF EXPERIMENT WITH THEORY FOR GAS-LIQUID CRITICAL TEMPERATURES; 4.1 Determining Stable Ternary Critical Points.
- 4.2 Strategies For Ternary Phenomena4.3 Gas-Liquid Critical Properties of Ternary Mixtures; 4.4 Computing Options For Ternary Calculations; References; Chapter 5. NOVEL HIGHER ORDER CRITICAL PHENOMENA IN TERNARY MIXTURES; 5.1 Tricritical Phenomena; 5.2 Higher Order Critical Transitions in Ternary Mixtures; References; Chapter 6. PHASE BEHAVIOUR OF TERNARY CARBON DIOXIDE AND n-ALKANE MIXTURES; 6.1 Methane + n-Hexane + Carbon Dioxide; 6.2 Ethane + n-Hexane + Carbon Dioxide; 6.3 Propane + n-Hexane + Carbon Dioxide; 6.4 n-Butane + n-Hexane + Carbon Dioxide.
- 6.5 n-Pentane + n-Hexane + Carbon Dioxide6.6 n-Heptane + n-Hexane + Carbon Dioxide; 6.7 n-Octane + n-Hexane + Carbon Dioxide; 6.8 n-Nonane + n-Hexane + Carbon Dioxide; 6.9 n-Decane + n-Hexane + Carbon Dioxide; References; Chapter 7. TERNARY TETRAFLUOROMETHANE AND n-ALKANE MIXTURES; 7.1 Methane + Ethane + Tetrafluoromethane; 7.2 Propane + i-Butane + Tetrafluoromethane; 7.3 Propane + n-Butane + Tetrafluoromethane; 7.4 Propane + n-Pentane + Tetrafluoromethane; References; Chapter 8. TERNARY MIXTURES CONTAINING NITROGEN; 8.1 Methane + Ethane + Nitrogen; 8.2 Methane + n-Pentane + Nitrogen.
- 8.3 Ethane + Nitrogen + Water8.4 n-Pentane + Nitrogen + Water; References; Chapter 9. TERNARY MIXTURES CONTAINING WATER AND n-ALKANES; 9.1 Ethane + Propane + Water; 9.2 Ethane + n-Pentane + Water; 9.3 Ethane + n-Hexane + Water; 9.4 n-Pentane + n-Hexane + Water; 9.5 Ethane + Carbon Dioxide + Water; References; Appendix A; A.1 Generalized Conditions For Multicomponent, Multiphase Equilibria; A.2 Generalized Stability Conditions; A.3 Critical Conditions For Binary and Ternary Mixtures; Appendix B; B.1 Compilation of Experimental Gas-Liquid Critical Properties of Ternary Mixtures.