Chemical reaction engineering : beyond the fundamentals / authors, L.K. Doraiswamy and Deniz Uner.

Filling a longstanding gap for graduate courses in the field, Chemical Reaction Engineering: Beyond the Fundamentals covers basic concepts as well as complexities of chemical reaction engineering, including novel techniques for process intensification. The book is divided into three parts: Fundament...

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Online Access: Full Text (via Taylor & Francis)
Main Authors: Doraiswamy, L. K. (Laxmangudi Krishnamurthy) (Author), Üner, Deniz (Author)
Format: eBook
Language:English
Published: Boca Raton : Taylor & Francis, [2014]
Subjects:

MARC

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245 1 0 |a Chemical reaction engineering :  |b beyond the fundamentals /  |c authors, L.K. Doraiswamy and Deniz Uner. 
264 1 |a Boca Raton :  |b Taylor & Francis,  |c [2014] 
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505 0 |a Part I Fundamentals revisited. Reactions and reactors: basic concepts -- Complex reactions and reactors -- Nonideal reactor analysis -- Part II Building on fundamentals. Rates and equilibria: the thermodynamic and extrathermodynamic approaches -- Theory of chemical kinetics in bulk and on the surface -- Reactions with an interface: mass and heat transfer effects -- Laboratory reactors: collection and analysis of the data -- Part III Beyond the fundamentals. Fixed-bed reactor design for solid catalyzed fluid-phase reactions -- Fluidized-bed reactor design for solid catalyzed fluid-phase reactions -- Gas-solid noncatalytic reactions and reactors -- Gase-liquid and liquid-liquid reactions and reactors -- Multiphase reactions and reactors -- Membrane-assisted reactor engineering -- combo reactors: distillation column -- Homogeneous catalysis -- Phase-transfer catalysis -- Forefront of the chemical reaction engineering field. 
504 |a Includes bibliographical references and index. 
520 |a Filling a longstanding gap for graduate courses in the field, Chemical Reaction Engineering: Beyond the Fundamentals covers basic concepts as well as complexities of chemical reaction engineering, including novel techniques for process intensification. The book is divided into three parts: Fundamentals Revisited, Building on Fundamentals, and Beyond the Fundamentals. Part I: Fundamentals Revisited reviews the salient features of an undergraduate course, introducing concepts essential to reactor design, such as mixing, unsteady-state operations, multiple steady states, and complex reactions. Part II: Building on Fundamentals is devoted to "skill building," particularly in the area of catalysis and catalytic reactions. It covers chemical thermodynamics, emphasizing the thermodynamics of adsorption and complex reactions; the fundamentals of chemical kinetics, with special emphasis on microkinetic analysis; and heat and mass transfer effects in catalysis, including transport between phases, transfer across interfaces, and effects of external heat and mass transfer. It also contains a chapter that provides readers with tools for making accurate kinetic measurements and analyzing the data obtained. Part III: Beyond the Fundamentals presents material not commonly covered in textbooks, addressing aspects of reactors involving more than one phase. It discusses solid catalyzed fluid-phase reactions in fixed-bed and fluidized-bed reactors, gas-solid noncatalytic reactions, reactions involving at least one liquid phase (gas-liquid and liquid-liquid), and multiphase reactions. This section also describes membrane-assisted reactor engineering, combo reactors, homogeneous catalysis, and phase-transfer catalysis. The final chapter provides a perspective on future trends in reaction engineering. 
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