目录 List of Contributors Preface 1. Introduction 1.1 Chemical Reaction Engineering 1.2 Conversion and Yield of Chemical Reactions 1.2.1 Extent of Reaction 1.2.2 Conversion 1.2.3 Yield and Selectivity 1.3 Classifications of Chemical Reactors 1.4 Operation Modes of Chemical Reactors 1.5 Models in Reactor Design 1.6 Scale-Up of Industrial Reactors Further Reading Problems 2. Fundamentals of Reaction Kinetics 2.1 Reaction Rate 2.2 Reaction Rate Equations 2.3 Effect of Temperature on Reaction Rate 2.4 Multiple Reactions 2.4.1 Consumption Rate and Formation Rate 2.4.2 Basic Types of Multiple Reactions 2.4.3 Reaction Network 2.5 Transformation and Integration of Reaction Rate Equations 2.5.1 Single Reaction 2.5.2 Multiple Reactions 2.6 Heterogeneous Catalysis and Adsorption 2.6.1 Heterogeneous Catalysis 2.6.2 Adsorption and Desorption 2.7 Kinetics of Heterogeneous Catalytic Reactions 2.7.1 Steady-State Approximation and Rate-Determining Step 2.7.2 Rate Equations of Heterogeneous Catalytic Reactions 2.8 Determination of Kinetic Parameters 2.8.1 Integration Method 2.8.2 Differential Method 2.9 Procedure for Developing Reaction Rate Equation Further Reading Problems 3. Tank Reactor 3.1 Mass Balance for Tank Reactor 3.2 Design of Isothermal Batch Tank Reactor(Single Reaction) 3.2.1 Calculation of Reaction Time and Reaction Volume 3.2.2 Optimal Reaction Time 3.3 Design of Isothermal Batch Tank Reactor (Multiple Reactions) 3.3.1 Parallel Reactions 3.3.2 Consecutive Reactions 3.4 Reactor Volume for Continuous Tank Reactor (CSTR) 3.5 CSTR in Series and Parallel 3.5.1 Overview 3.5.2 Calculations for Multiple Reactors in Series 3.5.3 Optimal Reaction Volume Ratio for CSTR in Series
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