Title: AN INTRODUCTION TO CHEMICAL ENGINEERING KINETICS & REACTOR DESIGN.
Author: CHARLES G. HILL, JR.
Type: Handbook Pdf, Epub & Ebook.
Highly praised by instructors, students, and chemical engineers, Introduction to Chemical Engineering Kinetics & Reactor Design has been extensively revised and updated in this Second Edition. The text continues to offer a solid background in chemical reaction kinetics as well as in material and energy balances, preparing readers with the foundation necessary for success in the design of chemical reactors. Moreover, it reflects not only the basic engineering science but also the mathematical tools used by today’s engineers to solve problems associated with the design of chemical reactors.
Introduction to Chemical Engineering Kinetics & Reactor Design enables readers to progressively build their knowledge and skills by applying the laws of conservation of mass and energy to increasingly more difficult challenges in reactor design. The first one-third of the text emphasizes general principles of chemical reaction kinetics, setting the stage for the subsequent treatment of reactors intended to carry out homogeneous reactions, heterogeneous catalytic reactions, and biochemical transformations. Topics include:
- Thermodynamics of chemical reactions
- Determination of reaction rate expressions
- Elements of heterogeneous catalysis
- Basic concepts in reactor design and ideal reactor models
- Temperature and energy effects in chemical reactors
- Basic and applied aspects of biochemical transformations and bioreactors
Table of Content:
Stoichiometric Coefficients and Reaction
Progress Variables 1
2 Thermodynamics of Chemical Reactions 5
3 Basic Concepts in Chemical Kinetics—Determination
of the Reaction Rate Expression 24
4 Basic Concepts in Chemical Kinetics—Molecular
Interpretations of Kinetic Phenomena 76
5 Chemical Systems Involving Multiple Reactions 127
6 Elements of Heterogeneous Catalysis 167
7 Liquid Phase Reactions 215
8 Basic Concepts in Reactor Design and Ideal
Reactor Models 245
9 Selectivity and Optimization Considerations in the
Design of Isothermal Reactors 317
10 Temperature and Energy Effects in Chemical Reactors 349
11 Deviations from Ideal Flow Conditions 388
12 Reactor Design for Heterogeneous Catalytic Reactions 425
13 Illustrative Problems in Reactor Design 540
Appendix A Thermochemical Data 570
Appendix B Fugacity Coefficient Chart 574
Appendix C Nomenclature 575
Name Index 581
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