Research Catalog
Modeling vapor-liquid equilibria : cubic equations of state and their mixing rules
- Title
- Modeling vapor-liquid equilibria : cubic equations of state and their mixing rules / Hasan Orbey, Stanley I. Sandler.
- Author
- Orbey, Hasan.
- Publication
- New York : Cambridge University Press, 1998.
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Status | Format | Access | Call Number | Item Location |
---|---|---|---|---|
Text | Request in advance | TP156.E65 O73 1998 | Off-site |
Holdings
Details
- Additional Authors
- Sandler, Stanley I., 1940-
- Description
- xvii, 207 pages : illustrations; 27 cm +
- Summary
- "Cubic equations of state are frequently used in the chemical and petroleum industries to model complex phase behavior and to design chemical processes. Recently developed mixing rules have greatly increased the accuracy and range of applicability of such equations."--BOOK JACKET. "This book presents a state-of-the-art review of this important topic and discusses the use of cubic equations of state to model the vapor-liquid behavior of mixtures of all degrees of nonideality."--BOOK JACKET.
- "This book will be an invaluable tool for chemical engineers, research chemists, and those involved in the simulation and design of chemical processes."--BOOK JACKET.
- Series Statement
- Cambridge series in chemical engineering
- Uniform Title
- Cambridge series in chemical engineering.
- Subject
- Bibliography (note)
- Includes bibliographical references (p. 199-204) and index.
- System Details (note)
- System requirements: Windows or DOS.
- Contents
- 1. Introduction -- 2. Thermodynamics of Phase Equilibrium -- 3. Vapor-Liquid Equilibrium Modeling with Two-Parameter Cubic Equations of State and the van der Waals Mixing Rules -- 4. Mixing Rules that Combine an Equation of State with an Activity Coefficient Model -- 5. Completely Predictive EOS-G[superscript ex] Models -- 6. Epilogue -- App. A. Bibliography of General Thermodynamics and Phase Equilibria References -- App. B. Summary of the Algebraic Details for the Various Mixing Rules and Computational Methods Using These Mixing Rules -- App. C. Derivation of Helmholtz and Gibbs Free-Energy Departure Functions from the Peng-Robinson Equation of State at Infinite Pressure -- App. D. Computer Programs for Binary Mixtures -- App. E. Computer Programs for Multicomponent Mixtures.
- ISBN
- 0521620279 (hb)
- LCCN
- 97043340
- OCLC
- ocm37917330
- Owning Institutions
- Columbia University Libraries