Essentials of chemical reaction engineering 1st edition

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Description This is the complete, modern-day advent to chemical reaction engineering for today"s readers: students who demand also instantaneous accessibility to indevelopment, have no time to waste, and desire to gain the learning procedure while building their skills through both important reasoning and also imaginative trouble fixing. H. Scott Fogler and also M. Nihat Gürguys build on the toughness of their classical Elements of Chemical Reaction Engineering, 4th Edition, enabling students to learn chemical reactivity engineering through logic fairly than memorization. They likewise administer extensive new resources to aid students get a deep intuitive understanding of exactly how reactors behave actually in varied situations. For example, they provide more than 60 realistic interactive simulations on CD-ROM - simply among many type of tools, videos, and games designed to assistance students through many various finding out styles. Much of this book"s content has actually been revised based upon feedago from 200+ College of Michigan students who classroom-tested this book. Coverage includes: mole balances; conversion and reactor sizing; rate laws; stoichiometry; isothermal reactor design; conversion; molar circulation rates; arsenal and evaluation of rate data; multiple reactions; reaction mechanisms, pathmethods, bioreactions, and bioreactors; catalysis and catalytic reactors; nonisothermal reactor design; steady state power balance and also adiabatic PFR applications; and also both steady-state and also unsteady-state nonisothermal reactor style.
Includes extensive new interactive resources on CD-ROM, including innovative new "Living Example" Problems Thoroughly classroom tested, and revised to reflect the feedback of 200+ University of Michigan students The best-selling chemical reaction engineering book for 20+ years - now in a new version for undergraduate chemical engineering students    ">
Designed to provide a deep, intuitive knowledge of chemical reactivity engineering, develop important thinking and also imaginative problem-fixing abilities - and also have actually fun doing it Includes substantial new interenergetic sources on CD-ROM, consisting of innovative brand-new "Living Example" Problems Thoapproximately classroom tested, and also revised to reflect the feedago of 200+ University of Michigan students The best-offering chemical reaction design book for 20+ years - currently in a brand-new variation for undergraduate chemical design students

 

 


The goal is to mitigate the present edition to about 600 pperiods so it would be proper for undergraduate use. 

Table of Components

Preface xv About the Author xxix Chapter 1: Mole Balances 1 1.1 The Rate of Reactivity, —rA 4 1.2 The General Mole Balance Equation 8 1.3 Batch Reactors (BRs) 10 1.4 Continuous-Flow Reactors 12 1.5 Industrial Reactors 22 Chapter 2: Convariation and also Reactor Sizing 33 2.1 Definition of Convariation 34 2.2 Batch Reactor Design Equations 34 2.3 Design Equations for Flow Reactors 37 2.4 Sizing Continuous-Flow Reactors 40 2.5 Reactors in Series 49 2.6 Some Additional Definitions 60 Chapter 3: Rate Laws 73 3.1 Basic Definitions 74 3.2 The Reactivity Order and the Rate Law 76 3.3 The Reaction Rate Constant 86 3.4 Present out Status of Our Approach to Reactor Sizing and Deauthorize 93 Chapter 4: Stoichiomeattempt 105 4.1 Batch Systems 107 4.2 Flow Equipment 113 Chapter 5: Isothermal Reactor Design: Convariation 139 5.1 Design Structure for Isothermal Reactors 140 5.2 Batch Reactors (BRs) 144 5.3 Continuous Stirred Tank Reactors (CSTRs) 152 5.4 Tubular Reactors 162 5.5 Pressure Drop in Reactors 169 5.6 Synthesizing the Design of a Chemical Plant 188 Chapter 6: Isothermal Reactor Design: Molar Flow Rates 207 6.1 The Molar Flow Rate Balance Algorithm 208 6.2 Mole Balances on CSTRs, PFRs, PBRs, and Batch Reactors 208 6.3 Applications of the Molar Flow Rate Algorithm to Microreactors 212 6.4 Membrane Reactors 217 6.5 Unsteady-State Operation of Stirred Reactors 225 6.6 Semibatch Reactors 226 Chapter 7: Collection and Analysis of Rate File 245 7.1 The Algorithm for Data Analysis 246 7.2 Determining the Reactivity Order for Each of Two Reactants Using the Method of Excess 248 7.3 Integral Method 249 7.4 Differential Method of Analysis 253 7.5 Nonstraight Regression 259 7.6 Reactivity Rate File from Differential Reactors 264 7.7 Experipsychological Planning 271 Chapter 8: Multiple Reactions 283 8.1 Definitions 283 8.2 Algorithm for Multiple Reactions 286 8.3 Parallel Reactions 289 8.4 Reactions in Series 298 8.5 Complex Reactions 308 8.6 Membrane Reactors to Improve Selectivity in Multiple Reactions 316 8.7 Sorting It All Out 321 8.8 The Fun Part 321 Chapter 9: Reaction Mechanisms, Pathways, Bioreactions, and also Bioreactors 339 9.1 Active Intermediates and Nonelementary Rate Laws 340 9.2 Enzymatic Reactivity Fundamentals 349 9.3 Inhibition of Enzyme Reactions 364 9.4 Bioreactors and Biosynthesis 371 Chapter 10: Catalysis and also Catalytic Reactors 409 10.1 Catalysts 409 10.2 Steps in a Catalytic Reaction 415 10.3 Synthesizing a Rate Law, Mechanism, and Rate-Limiting Step 431 10.4 Heterogeneous Documents Analysis for Reactor Deauthorize 446 10.5 Reactivity Engineering in Microdigital Fabrication 456 10.6 Model Discrimicountry 461 Chapter 11: Nonisothermal Reactor Design—The Steady State Energy Balance and also Adiabatic PFR Applications 477 11.1 Rationale 478 11.2 The Energy Balance 479 11.3 The User Friendly Energy Balance Equations 486 11.4 Adiabatic Operation 492 11.5 Adiabatic Equilibrium Convariation and Reactor Staging 502 11.6 Optimum Feed Temperature 509 Chapter 12: Steady-State Nonisothermal Reactor Design–Flow Reactors through Heat Exadjust 521 12.1 Steady-State Tubular Reactor via Heat Exchange 522 12.2 Balance on the Heat Transfer Fluid 525 12.3 Algorithm for PFR/PBR Design via Heat Effects 527 12.4 CSTR via Heat Effects 545 12.5 Multiple Steady States (MSS) 556 12.6 Nonisothermal Multiple Chemical Reactions 563 12.7 Safety 577 Chapter 13: Unsteady-State Nonisothermal Reactor Deauthorize 601 13.1 The Unsteady-State Energy Balance 602 13.2 Energy Balance on Batch Reactors 604 13.3 Semibatch Reactors via a Heat Exchanger 615 13.4 Unsecure Operation of a CSTR 620 13.5 Nonisothermal Multiple Reactions 624 Appendix A: Numerical Techniques 649 Appendix B: Ideal Gas Constant and also Convariation Factors 655 Appendix C: Thermodynamic Relationships Involving the Equilibrium Constant 659 Appendix D: Nomenclature 665 Appendix E: Software Packeras 669 E.1 Polymath 669 E.2 AspenTech 670 E.3 COMSOL 671 E.4 Software Packperiods 671 Appendix F: Rate Law Documents 673 Appendix G: Open-Ended Problems 675 G.1 Design of Reactivity Engineering Experiment 675 G.2 Effective Lubricant Deauthorize 675 G.3 Peach Bottom Nuclear Reactor 675 G.4 Underground Wet Oxidation 675 G.5 Hydrodesulfurization Reactor Design 676 G.6 Continuous Bioprocessing 676 G.7 Methanol Synthesis 676 G.8 Alcohol Metabolism 676 G.9 Methanol Poisoning 676 G.10 Cajun Seafood Gumbo 676 Appendix H: How to Use the DVD-ROM 679 H.1 DVD-ROM Contents 679 H.2 How the DVD-ROM/Net Can Assistance Learning Styles 682 H.3 Navigation 683 Index 685


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About the Author(s)


H. Scott Fogler is the Ame and also Catherine Vennema Professor of Chemical Engineering and also the Arthur F. Thurnau Professor at the College of Michigan, and is the 2009 President of the Amerihave the right to Institute of Chemical Engineers. His study interests incorporate flow and reactivity in porous media, fsupplied chemical connections, gellation kinetics, colloidal sensations, and catalyzed dissolution. He has been thesis advisor for 40 Ph.D. students and also has actually more than 200 refereed publications in these areas. Fogler has actually chaired ASEE’s Chemical Engineering Division, offered as director of the American Institute of Chemical Engineers, and also earned the Warren K. Lewis Award from AIChE for contributions to chemical design education and learning. He additionally got the Chemical Manufacturers Association’s National Catalyst Award. He is a cowriter of the best-selling textbook Strategies for Creative Problem Solving, Third Edition (Prattract Hall, 2014).

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