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Separation Process Engineering: Includes Mass Transfer Analysis
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The Definitive, Fully Updated Guide to Separation Process EngineeringNow with a Thorough Introduction to Mass Transfer AnalysisSeparation Process Engineering, Third Edition, is the most comprehensive, accessible guide available on modern separation processes and the fundamentals of mass transfer. Phillip C. Wankat teaches each key concept through detailed, realistic examples using real dataincluding uptodate simulation practice and new spreadsheetbased exercises.Wankat thoroughly covers each of todays leading approaches, including flash, column, and batch distillation; exact calculations and shortcut methods for multicomponent distillation; staged and packed column design; absorption; stripping; and more. In this edition, he also presents the latest design methods for liquidliquid extraction. This edition contains the most detailed coverage available of membrane separations and of sorption separations (adsorption, chromatography, and ion exchange).Updated with new techniques and references throughout, Separation Process Engineering, Third Edition, also contains more than 300 new homework problems, each tested in the authors Purdue University classes.Coverage includes Modular, uptodate process simulation examples and homework problems, based on Aspen Plus and easily adaptable to any simulator Extensive new coverage of mass transfer and diffusion, including both Fickian and MaxwellStefan approaches Detailed discussions of liquidliquid extraction, including McCabeThiele, triangle and computer simulation analyses; mixersettler design; Karr columns; and related mass transfer analyses Thorough introductions to adsorption, chromatography, and ion exchangedesigned to prepare students for advanced work in these areas Complete coverage of membrane separations, including gas permeation, reverse osmosis, ultrafiltration, pervaporation, and key applications A full chapter on economics and energy conservation in distillation Excel spreadsheets offering additional practice with problems in distillation, diffusion, mass transfer, and membrane separation
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