Kinetics - Reactor Design: Multiple Reactions

Kinetics - Reactor Design: Multiple Reactions

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Determining Rate Constants from Selectivity

1 of 26

1 of 26

Determining Rate Constants from Selectivity

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Kinetics - Reactor Design: Multiple Reactions

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  1. 1 Determining Rate Constants from Selectivity
  2. 2 Elementary Reactions
  3. 3 Gas Phase Chemical Equilibrium
  4. 4 Inert Effect on Chemical Equilibrium
  5. 5 Predator-Prey Model
  6. 6 Relationship Between the Equilibrium Constants
  7. 7 Reverse Reaction Rate
  8. 8 Reversible Non-Elementary Reaction
  9. 9 Solid-Liquid Chemical Equilibrium
  10. 10 Batch Reactor with Multiple Reactions
  11. 11 Batch Reactor with Reversible Reaction
  12. 12 Isothermal Semibatch Reactor with Multiple Reactions
  13. 13 Mass Balance for Reversible Reactions in a Batch Reactor
  14. 14 Multiple Reactions in a CSTR
  15. 15 Multiple Reactions in an Isothermal CSTR
  16. 16 Multiple Reactions in PBR Part 1
  17. 17 Multiple Reactions in PBR Part 2
  18. 18 Packed Bed Reactor Design
  19. 19 Selectivity in a Semibatch Reactor
  20. 20 Semibatch Reactor with Heat Exchange
  21. 21 Parallel Reactions in a Batch Reactor
  22. 22 Selectivity in Parallel Reactions
  23. 23 Series Reaction in a Batch Reactor
  24. 24 Selectivity in Series Reactions
  25. 25 Series Reaction in a Plug Flow Reactor
  26. 26 Packed Bed Reactor Example

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