Kinetics-Reactor Design: Isothermal Reactor Design

Kinetics-Reactor Design: Isothermal Reactor Design

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Comparing CSTR and PFR Balances

22 of 61

22 of 61

Comparing CSTR and PFR Balances

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Classroom Contents

Kinetics-Reactor Design: Isothermal Reactor Design

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  1. 1 Math Review for Kinetics
  2. 2 Euler Method for ODEs
  3. 3 Solving Linear ODEs Analytically
  4. 4 Runge-Kutta Method Introduction
  5. 5 Introduction to Chemical Reactor Design
  6. 6 How to Solve Reactor Design Problems
  7. 7 Batch Reactor Overview
  8. 8 Batch Reactor Scale-Up
  9. 9 Batch Reactor with Excess Reactant
  10. 10 Batch Reactor: Catalytic Activity Decay
  11. 11 Inert Effect on Equilibrium
  12. 12 Isothermal Batch Reactor Part 1
  13. 13 Isothermal Batch Reactor Part 2 (POLYMATH Solution)
  14. 14 Isothermal Semibatch Catalytic Reactor
  15. 15 Material Balances on Tank Reactors
  16. 16 Reaction Times for High Conversion
  17. 17 Semibatch Reactor Overview
  18. 18 Catalyst Amount in Packed Bed Reactor
  19. 19 Catalytic Packed Bed Reactor
  20. 20 Catalytic Packed Bed Reactor (POLYMATH)
  21. 21 Catalytic Reactor: Activity Decay
  22. 22 Comparing CSTR and PFR Balances
  23. 23 CSTR Design Example (Using Damkohler Number)
  24. 24 Continuous Stirred Tank Reactor Overview
  25. 25 Determining Rate Constant in a PBR
  26. 26 Effect of Ignoring Density Change in PFR
  27. 27 Effect of Stoichiometry in Gas Phase Reaction
  28. 28 Equivalence between a PFR and a CSTR
  29. 29 Explanation of the Ergun Equation
  30. 30 Gas Reacts to Form Solid Product in PFR
  31. 31 Half-Life for First-Order Reaction
  32. 32 Isothermal Plug Flow Reactor: Part 1
  33. 33 Isothermal Plug Flow Reactor: Part 2
  34. 34 Levenspiel Plots
  35. 35 Mole Balance on a Plug Flow Reactor
  36. 36 PFR Design Example (Using Damkohler Number)
  37. 37 Plug Flow Reactor Overview
  38. 38 Pressure Drop in a Packed Bed Reactor
  39. 39 Pressure Drop in a Packed Bed Reactor (POLYMATH)
  40. 40 Reaction in a PFR with Pressure Drop
  41. 41 Reaction Rate in an Isothermal PFR
  42. 42 Reactor with Highest Rate of Consumption
  43. 43 Semibatch Hydrogenation Example
  44. 44 Variable Density Reaction in a PFR
  45. 45 Comparing Reactors in Series
  46. 46 CSTRs in Series
  47. 47 PFR and CSTR in Series A
  48. 48 PFR and CSTR in Series B
  49. 49 Reactor Sequence: CSTR and PFR
  50. 50 Reactors in Series: First-Order Reaction
  51. 51 Replacing a CSTR with Two CSTRs in Series
  52. 52 Sizing CSTRs on Reciprocal Rate Data
  53. 53 Two CSTRs in Series
  54. 54 Laminar Flow Reactor: Segregated Flow
  55. 55 Length of a Porous Wall Tubular Reactor
  56. 56 Membrane Reactor Introduction
  57. 57 Membrane Reactor
  58. 58 Recycle Reactor Example
  59. 59 Material Balances on Tank Reactors
  60. 60 Reversible Reaction in an Isothermal CSTR
  61. 61 Introduction to Chemical Reactor Design

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