Elements of
Chemical Reaction Engineering
6th Edition



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Essentials of
Chemical Reaction Engineering
Second Edition

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Prof. Kraft's Lecture Notes

This page contains lecture notes from Prof. Kraft

Lecture 1

  • Introduction and Molar Balances

  • Lecture 2
  • Mass Balances in Reactors

  • Lecture 2b
  • Reactor Mole Balance Example Problems

  • Lecture 3
  • Conversion and Reactors in Series

  • Lecture 3b
  • Reactor Sizing Example Problems

  • Lecture 4
  • Rate Laws and Stoichiometry

  • Lecture 4b
  • Rate law and Stoichiometry Example Problems

  • Lecture 5
  • Reactor Design Recipe and Scaleup

  • Lecture 6
  • Pressure Drop in Reactors

  • Lecture 7
  • CSTR Start Up and Semibatch Reactors

  • Lecture 7b
  • Pressure drop, CSTR Start Up and Semibatch Reactors Examples

  • Lecture 8
  • Analysis of Rate Data

  • Lecture 9
  • Reactor Design for Multiple Rxns

  • Lecture 9b
  • Selectivity Example Problems

  • Lecture 10
  • Nonelementary Rxns

  • Lecture 10b
  • Bioreactors

  • Lecture 11
  • Thermochem Review

  • Lecture 12
  • Nonisothermal Reaction Engineering

  • Lecture 13
  • Equilibrium Conversion

  • Lecture 14
  • Reactor Stability

  • Lecture 15
  • Nonisothermal Reaction Engr Example Problems

  • Lecture 16
  • Unsteady State and Reaction Engr

  • Lecture 17
  • Basic Catalysis and Mechanisms

  • Lecture 18
  • CVD and Catalyst Deactivation

  • Lecture 18b
  • Deducing Mechanisms Example Problems

  • Lecture 19
  • External Diffusion

  • Lecture 20
  • Shrinking Core Model, Internal Diffusion and Catalysis

  • Lecture 21
  • Internal and External Diffusion

  • Lecture 21b
  • Diffusion Example Problems

  • Lecture 22
  • Nonideal Flow & Reactor Design

  • Lecture 23
  • Micromixing

  • Lecture 23b
  • Nonideal Flow Example Problems