Chemical Reaction Engineering II Video Lectures

Chemical Reaction Engineering II
'Chemical Reaction Engineering II' Video Lectures by Prof. A.K. Suresh, Prof. Ganesh A. Viswanathan, Prof. Sanjay M. Mahajani from IIT Bombay
"Chemical Reaction Engineering II" - Video Lectures
1. L1-Introduction to catalysts and catalysis
2. L2-Steps in catalytic reaction: adsorption, desorption and reaction
3. L3-Derivation of the rate equation
4. L4-Heterogenous data analysis for reactor design - I
5. L5-Heterogenous data analysis for reactor design - II
6. L6-Catalyst deactivation and accounting for it in design - I
7. L7-Catalyst deactivation and accounting for it in design - II
8. L8-Synthesize the rate equation
9. L9-Introduction to intraparticle diffusion
10. L10-Intraparticle diffusion: Thiele modulus and effectiveness factor Part I
11. L11-Intraparticle diffusion: Thiele modulus and effectiveness factor Part II
12. L12-Intraparticle diffusion: Thiele modulus and effectiveness factor Part III
13. L13-Effectiveness factor and Introduction to external mass transfer
14. L14-External Mass Transfer
15. L15-Implications to rate data interpretation and design I
16. L16-Implications to rate data interpretation and design II
17. L17-Packed-bed reactor design
18. L18-Fluidized bed reactor design I
19. L19-Fluidized bed reactor design II
20. L20-Gas-liquid reactions-1: Theories of mass transfer into agitated liquids
21. L21-GLR-2: Effect of chemical reaction on mass transfer: the slow reaction regime
22. L22-GLR-3: Transition to fast reaction, and the Fast reaction regime
23. L23-GLR-4: Fast reaction example; Instantaneous reaction regime
24. L24-GLR-5: Transition to Instantaneous reaction; Reaction regimes in surface renewal theories
25. L25-GLR-6: Reaction regimes in surface renewal theories (contd..)
26. L26-GLR-7: Surface renewal theories: Instantaneous reaction and Summing up
27. L27-Fluid-solid non-catalytic reactions I
28. L28-Fluid-solid non-catalytic reactions II
29. L29-Fluid-solid non-catalytic reactions III
30. L30-Distribution of residence time
31. L31-Measurement of residence time distribution
32. L32-Residence time distribution function
33. L33-Reactor diagnostics and troubleshooting
34. L34-Modeling non-ideal reactors
35. L35-Residence time distribution: Performance of non-ideal reactors
36. L36-Non-ideal Reactors: Tanks-in-series model
37. L37-Non-ideal Reactors: Dispersion model
38. L38-Non-ideal Reactors: Dispersion model and introduction to multiparameter models
39. L39-Non-ideal Reactors: Multiparameter models
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