1. | Course introduction and Reaction meachanism | 1. Introduction to CRE 2 cource 2. Pseudo-steady state approximation | ||
2. | Reaction mechanisms | Enzymatic reaction fundamentals | ||
3. | Reaction mechanisms | Inhibition of enzyme reactions | ||
4. | Reaction mechanisms | Inhibition of enzyme reactions | ||
5. | Reaction mechanisms | Bioreactors | ||
6. | Reaction mechanisms | Biosynthesis | ||
7. | Catalysis | 1. Catalysts 2. Steps in catalytic reactions | ||
8. | Catalysis | 1. Catalysts 2. Steps in catalytic reactions | ||
9. | Catalysis | 1. Catalysts 2. Steps in catalytic reactions | ||
10. | Catalysis | 1. Proposing reaction mechanisms. 2. Heterogeneous data analysis | ||
11. | Catalysis | 1. Reaction engineering in microelectronic fabrication 2. Model discrimination | ||
12. | Non-is othermal reactor design | 1. Energy balance | ||
13. | Non-is othermal reactor design | 1. The User-Friendly Energy balance equations 2.Adiabatic Operation | ||
14. | Non-is othermal reactor design | 1. Adiabatic equilibrium conversion and reactor staging 2. Optimum Feed Temperature | ||
15. | Non-is othermal reactor designwith heatexchange | 1. Tubular Reacto with Heat exchange 2. Balance on the Heat Transfer Fluid |
||
Non-is othermal reactor designwith heatexchange | 1. Algorithm for PFR/PBR Design with Heat Effect 2. CSTR with heat effects |