Elements of
Chemical Reaction Engineering
6th Edition



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Essentials of
Chemical Reaction Engineering
Second Edition

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Prof. Fogler's Lecture Notes

This page contains lecture notes from a typical Chemical Reaction Engineering class.

The lectures are categorized into 3 different filetypes: Animated, Plain, and PDF.

Animated lectures are for students who prefer studying bit-by-bit, while plain lectures are not animated.

Lectures 27 and 29-31 are from Prof. Mary Kraft, Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign.

Lecture 1 - Chapter 1 (Mole Balances)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 2 - Chapter 2 (Conversion and Reactor Sizing)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 3 - Chapter 3 (Rate Laws)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 4 - Chapter 4 (Stoichiometry - Liquid systems)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 5 - Chapter 4 (Stoichiometry - Gas systems)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 6 - Chapter 5 (CRE Algorithm)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 7 - Chapter 5 (California Exam Problems)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 8 - Chapter 5 (Pressure Drop)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 9 - Chapter 6 (Membrane Reactors)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 10 - Chapter 6 (Semibatch)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 11 - Chapter 7 (Analysis of Rate)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 12 - Chapter 8 (Series Reactions)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 13 - Chapter 8 (Complex Reactions)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 14 - Chapter 9 (Non-elementary Rate Laws)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 15 - Chapter 9 (Bioreactors)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 16 - Chapter 9 (Biogrowth)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 17 - Chapter 10 (Steps in a Catalytic Reaction)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 18 - Chapter 10 (Reaction Mechanism - Chemical Vapor Deposition)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 19 - Chapter 11 (Energy Balance, Adiabatic Reactors)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 20 - Chapter 11 (Adiabatic CSTR), Chapter 12 (Heat Exchange in a PFR, Reversible Reactions)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 21 - Chapter 12 (Reversible Gas Phase Reaction with Heat Effects, Reactor Staging)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 22 - Chapter 12 (Multiple Steady States)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 23 - Chapter 12 (Multiple Reactions with Heat Effects)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 24 - Chapter 13 (Unsteady State Energy Balance, Multiple Steady States)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 25 - Chapter 13 (Safety in Chemical Reactors)
  • Animated PowerPoint
  • Plain PowerPoint
  • PDF Slides


  • Lecture 26 - Chapter 14 (Mass Transfer limitations)
  • Plain PowerPoint
  • PDF Slides


  • Lecture 27 - Chapter 14 (Diffusion and Reaction)
  • Plain PowerPoint
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  • Lecture 28 - Chapter 15 (Diffusion and Reaction)
  • Plain PowerPoint
  • PDF Slides


  • Lecture 29 - Chapter 15 (Diffusion and Reaction)
  • Plain PowerPoint
  • PDF Slides


  • Lecture 30 - Chapter 16 (Distribution of Residence Time)
  • Plain PowerPoint
  • PDF Slides


  • Lecture 31 - Chapter 17 (Models for Nonideal Reactors)
  • Plain PowerPoint
  • PDF Slides


  • Lecture 32 - Chapter 18 (Predicting Conversion)
  • Plain PowerPoint
  • PDF Slides