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Chemical Reaction Engineering NPTEL

Online Free Online Course by  World Mentoring Academy
Online / Free Online Course

Details

Description: The objective of this course is to help the student master several advanced ideas in chemical reaction engineering, notably: Complex chemical reaction mechanisms and kinetics. Transport effects in multiphase reactive systems. Advanced reactor design and stability, including consideration of the energy balance. On completion of the course, the student should be able to design/analyze a variety of complex reacting systems in both traditional and nontraditional areas of chemical engineering.

Resources: OpenCourseware from NPTEL (India), Sheridan College, MIT, UC Berkeley, Stanford & many other of the World's finest University's.

Language: English

Professors: Michael Williams

Units: 40

Lesson content
  • Mod-01Lec-01 Introduction & Overview  
  • Mod-02 Lec-02 Basic Concepts:Representation of Chemical Reactions  
  • Mod-02 Lec-03 Thermodynamics of Chemical Reactions:Part-I  
  • Mod-02 Lec-04 Thermodynamics of Chemical Reactions:Part II  
  • Mod-02 Lec-05 Chemical Reaction Kinetics - Overview  
  • Mod-02 Lec-06 Chemical Reaction Kinetics and Reactor Design  
  • Mod-02 Lec-07 Chemical Reactor Design  
  • Mod-02 Lec-08 Problem solving:Thermodynamics & kinetics  
  • Mod-03 Lec-09 Complex Reactions - Introduction  
  • Mod-03 Lec-10 Complex Reactions - Yield & Selectivity  
  • Mod-03 Lec-11 Complex Reactions - Quasi Steady State and Quasi Equilibrium Approximations  
  • Mod-03 Lec-12 Complex Reactions - Kinetics of chain Reactions & Polymerization  
  • Mod-03 Lec-13 Catalytic reactions - Introduction  
  • Mod-03 Lec-14 Catalytic reactions - Adsorption & Desorption  
  • Mod-03 Lec-15 Catalytic reactions-Kinetics  
  • Mod-03 Lec-16 Monomolecular ReactionNetwork and Lumping Analysis  
  • Mod-03 Lec-17 Problem solving:Complex reactions  
  • Mod-04 Lec-18 Gas-solid Catalytic Reactions - External diffusion  
  • Mod-04 Lec-19 Gas-solid Catalytic Reactions Transport in Catalyst Pellet  
  • Mod-04 Lec-20 Gas-solid Catalytic Reactions - Diffusion & Reaction I  
  • Mod-04 Lec-21 Gas - Solid Catalytic Reactions - Diffusion & Reaction II  
  • Mod-04 Lec-22 Gas - solid Catalytic Reactions- Diffusion & Reaction III  
  • Mod-04 Lec-23 Gas - solid Catalytic Reactions - Nonisothermal effects  
  • Mod-04 Lec-24 Gas-solid Noncatalytic Reactions  
  • Mod-04 Lec-25 Gas-Liquid Reactions  
  • Mod-04 Lec-26 Problem solving : Heterogenous reactions  
  • Mod-05 Lec-27 Chemical Reactor Design:Mass & Energy Balances  
  • Mod-05 Lec-28 Chemical Reactor Design:Mass and Energy Balances for Heterogenous Reactions  
  • Mod-05 Lec-29 Nonisothermal Reactor operation  
  • Mod-05 Lec-30 Case Study - Ethane dehyrogenation  
  • Mod-05 Lec-31 Case Study - Hydrogenation of Oil  
  • Mod-05 Lec-32 Case Study - Ammonia Synthesis  
  • Mod-05 Lec-33 Autothermal reactors  
  • Mod-05 Lec-34 Parametric Sensitivity  
  • Mod-05 Lec-35 CSTR - Multiple Steady States  
  • Mod-05 Lec-36 Stability Analysis - Basics  
  • Mod-05 Lec-37 Stability Analysis - Examples  
  • Mod-05 Lec-38 Nonideal flow and reactor performance  
  • Mod-05 Lec-39 Nonideal flow and reactor performance  
  • Mod-05 Lec-40 Problem solving:Reactor Design
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