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For decades, H. Scott Fogler's Elements of Chemical Reaction Engineering has been the world's dominant chemical reaction engineering text. This Sixth Edition and integrated Web site deliver a more compelling active learning experience than ever before. Using sliders and interactive examples in Wolfram, Python, POLYMATH, and MATLAB, students can explore reactions and reactors by running realistic simulation experiments. Writing for today's students, Fogler provides instant access to information, avoids extraneous details, and presents novel problems linking theory to practice. Faculty can flexibly define their courses, drawing on updated chapters, problems, and extensive Professional Reference Shelf web content at diverse levels of difficulty. The book thoroughly prepares undergraduates to apply chemical reaction kinetics and physics to the design of chemical reactors. And four advanced chapters address graduate-level topics, including effectiveness factors. To support the field's growing emphasis on chemical reactor safety, each chapter now ends with a practical safety lesson.
Introduction
Mole Balances
Conversion and Reactor Sizing
Rate Laws
Stoichiometry
Isothermal Reactor Design: Conversion
Isothermal Reactor Design: Moles and Molar Flow Rates
Collection And Analysis of Rate Data
Multiple Reactions
Reaction Mechanisms, Pathways, Bioreactions, and Bioreactors
Catalysis and Catalytic Reactors
Nonisothermal Reactor Design: The Steady-state Energy Balance and Adiabatic PFR Applications
Steady-State Nonisothermal Reactor Design: Flow Reactors With Heat Exchange
Unsteady-State Nonisothermal Reactor Design
Mass Transfer Limitations in Reacting Systems
Diffusion and Reaction
Residence Time Distributions of Chemical Reactors
Predicting Conversion Directly From the Residence Time Distribution
Models For Nonideal Reactors