Separation Process Principles

ISBN-10: 0471464805

ISBN-13: 9780471464808

Edition: 2nd 2006 (Revised)

Authors: J. D. Seader, Ernest J. Henley

List price: $212.95
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The latest principles, processes, and practices Chemical engineering design is in a constant state of flux. From advances in the practice of separation operations in chemical engineering to corresponding changes in the curriculum, much has happened in the seven years since the publication of Seader and Henley's first edition of Separation Process Principles, including: (1) advances in the fundamentals of mass, heat, and momentum transport, (2) wide availability of computer programs to facilitate the application of mathematical models to a wide range of separation operations, (3) increasing interest in separations involving the solid phase, and (4) changes in the practice of chemical engineering to emphasize product design as well as process design. This second edition reflects these changes. Highlights of the second edition Chapter on crystallization, including thermodynamic and transport aspects, the MSMPR crystallizer model, and treatments of screen analysis, desublimation, and evaporation Chapter on drying of solids, including treatments of psychrometry and several dryer mathematical models Chapter on leaching of solids, including a discussion of the espresso machine Substantial new sections on ultrafiltration and microfiltration, including detailed examples Added section on simulated-moving-bed adsorption, including detailed examples Expansion of the treatment of batch distillation to include optimal control New sections on hybrid systems and membrane cascades Now includes 214 examples and 649 homework exercises Website for students and instructors:
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Book details

List price: $212.95
Edition: 2nd
Copyright year: 2006
Publisher: John Wiley & Sons, Incorporated
Publication date: 10/28/2005
Binding: Hardcover
Pages: 800
Size: 8.50" wide x 11.00" long x 1.25" tall
Weight: 4.180
Language: English

About the Authors.Preface to the Second Edition
Dimensions and Units
Fundamental Concepts
Separation Processes
Thermodynamics of Separation Operations
Mass Transfer and Diffusion
Single Equilibrium Stages and Flash Calculations
Cascades and Hybrid Systems
Separations by Phase Addition or Creation
Absorption and Stripping of Dilute Mixtures
Distillation of Binary Mixtures
Liquid-Liquid Extraction with Ternary Systems
Approximate Methods for Multicomponent, Multistage Separations
Equilibrium-Based Methods for Multicomponent Absorption, Stripping, Distillation, and Extraction
Enhanced Distillation and Supercritical Extraction
Rate-Based Models for Distillation
Batch Distillation
Separations by Barriers and Solid Agents
Membrane Separations
Adsorption, Ion Exchange, and Chromatography
Separations that Involve a Solid Phase
Leaching and Washing
Crystallization, Desublimation, and Evaporation
Drying of Solids
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