Homogeneous Reactions

Total Lectures


Lec 1: Introduction and Overview on Reaction Engineering


Lec 1: Introduction and Overview on Reaction Engineering
Lec 2: Kinetics of Homogeneous Reactions
Lec 3: Kinetic Model and Temperature Dependency
Lec 4: Introduction and Stoichiometry for the Batch System
Lec 5: Stoichiometry for Constant Volume Flow and Variable Volume Batch Systems
Lec 6: Stoichiometry for Variable Volume Flow System
Lec 7: Analysis of Batch Reactor Kinetic Data
Lec 10: Differential Method of Analysis and Variable Volume Batch Reactor Data
Lec 11: Introduction and Ideal Batch Reactor Design
Lec 12: Ideal Mixed Flow Reactor Design
Lec 13: Ideal Plug Flow Reactor Design
Lec 14: Size Comparisn of Single and Multiple Reactors
Lec 15: Size Comaprison Multiple Reactors
Lec 16: Recycle and Autocatalytic Reactors
Lec 17: Design for Parallel Reactions
Lec 18: Design for Series Reactions
Lec 19: Design for Series-Parallel Reactions
Lec 20: Denbigh Reactions and Their Special Cases
Lec 21:Heats of Reaction and Equilibrium Conversion from Thermodynamics
Lec 22: General Graphical Reactor Design Procedure
Lec 23: Material and Energy Balances in Batch Reactor
Lec 24: Optimum Temperature Progression in Batch Reactor
Lec 25: Material and Energy Balances in Flug Flow and Mixed Flow Reactors
Lec 26: Ideal and Non-Ideal Mixed Flow Reactor Design and Multiple Steady States
Lec 27: Non-Ideal Reactors and Residence Time Distribution
Lec 28: RTD Measurement and Moments of RTD
Lec 29: RTD in Ideal Reactors
Lec 30: Reactor Modeling using the RTD
Lec 8: Intregal Method of Analysis of Batch Reactor Data: Part 1
Lec 9: Intregal Method of Analysis of Batch Reactor Data: Part 2
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