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ITK-234 Termodinamika Teknik Kimia 2

ITK-234 Termodinamika Teknik Kimia 2. Chemical Equilibria. Dicky Dermawan www.dickydermawan.net78.net dickydermawan@gmail.com. Reaction Coordinate e. Reaction Coordinate e. If, initially there are 2 mol CH 4 , 1 mol H 2 O, 1 mol CO, and 4 mol H 2 :. Reaction Coordinate.

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ITK-234 Termodinamika Teknik Kimia 2

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  1. ITK-234 Termodinamika Teknik Kimia 2 Chemical Equilibria DickyDermawan www.dickydermawan.net78.net dickydermawan@gmail.com

  2. Reaction Coordinate e

  3. Reaction Coordinate e If, initially there are 2 mol CH4, 1 mol H2O, 1 mol CO, and 4 mol H2:

  4. Reaction Coordinate

  5. Reaction Coordinate: Multiple Reactions

  6. Reaction Coordinate: Multiple Reactions

  7. Reaction Coordinate e If, initially there are 2 mol CH4, 1 mol H2O, 1 mol CO, and 4 mol H2:

  8. Reaction Coordinate

  9. Reaction Coordinate & Equilibrium Condition

  10. Reaction Coordinate & Equilibrium Condition (Cont’)

  11. Method of Equilibrium Constant For gases: For ideal gases:

  12. Method of Equilibrium Constant

  13. Problems

  14. Problem Hint: Different Way Leads to The Same Results

  15. Problems

  16. Calculation of Equilibrium Constant

  17. Heat Capacity Data - Gases

  18. Heat Capacity Data - Gases

  19. Heat Capacity Data - Solid

  20. Heat Capacity Data - Liquid

  21. Problems

  22. Problems

  23. Problems

  24. Problems

  25. Problems

  26. Problems

  27. Problems

  28. Problems

  29. Problems

  30. Multiple Reactions A bed of coal (assume pure carbon) in a coal gasifier is fed with steam and air and produce a gas stream containing H2, CO, O2, H2O, CO2, and N2. If the feed to the gasifier consists of 1 mol of steam and 2.38 mol of air, calculate the equilibrium composition of the gas stream at P = 20 bar.

  31. Multiple Reactions

  32. Problems

  33. Problems

  34. Problems

  35. Lagrange Multiplier for Complex Reaction No. of eqn = no. of involved atom First Step: Atomic Balances #2 Step: No. of eqn = no. of species involved Use Computer to Solve All The Equation Simultaneously.

  36. Problem Calculate the equilibrium composition at 1000 K and 1 bar of a gas-phase system containing the species CH4, H2O, CO, CO2, and H2. In the initial unreacted state ther are present 2 mol of CH4 and 3 mol of H2O. Assume ideal gases. At 1000 K:

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