
Phase Equilibrium Engineering: Volume 3
Author(s): Esteban Brignole (Author)
- Publisher: Elsevier
- Publication Date: 29 April 2013
- Language: English
- Print length: 384 pages
- ISBN-10: 0444563644
- ISBN-13: 9780444563644
Book Description
Traditionally, the teaching of phase equilibria emphasizes the relationships between the thermodynamic variables of each phase in equilibrium rather than its engineering applications. This book changes the focus from the use of thermodynamics relationships to compute phase equilibria to the design and control of the phase conditions that a process needs.
Phase Equilibrium Engineering presents a systematic study and application of phase equilibrium tools to the development of chemical processes. The thermodynamic modeling of mixtures for process development, synthesis, simulation, design and optimization is analyzed. The relation between the mixture molecular properties, the selection of the thermodynamic model and the process technology that could be applied are discussed. A classification of mixtures, separation process, thermodynamic models and technologies is presented to guide the engineer in the world of separation processes. The phase condition required for a given reacting system is studied at subcritical and supercritical conditions.
The four cardinal points of phase equilibrium engineering are: the chemical plant or process, the laboratory, the modeling of phase equilibria and the simulator. The harmonization of all these components to obtain a better design or operation is the ultimate goal of phase equilibrium engineering.
- Methodologies are discussed using relevant industrial examples
- The molecular nature and composition of the process mixture is given a key role in process decisions
- Phase equilibrium diagrams are used as a drawing board for process implementation
Editorial Reviews
Review
An introduction to phase equilibrium behavior and phase equilibrium modeling for design of the phase condition of separation processes and chemical reactors
About the Author
Selva Pereda is Principal Researcher at the Argentinean National Research Council (CONICET) and Associate Professor at National South University, Argentina. Her research field of interest is the thermodynamic modelling of complex systems and its application to process and product conceptual design for the development of biorefineries. Her contributions are focused on the systematic application of thermodynamic tools to develop pressure-intensified technologies. She is an Editorial board member of the Elsevier Journal of Supercritical Fluids.
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