phase equilibria. ternary systems types: (liquid –vapor) ternary systems (liquid – solid )...

39
PHASE EQUILIBRIA

Upload: avis-stokes

Post on 05-Jan-2016

262 views

Category:

Documents


7 download

TRANSCRIPT

Page 1: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

PHASE EQUILIBRIA

Page 2: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Ternary Systems

• Types: (Liquid –Vapor) ternary systems (Liquid – Solid ) ternary systems

Page 3: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Section 12

Today’s Topic :• The Three component system , L-V type– Degree of freedom analysis– How to determine compositions ?– The phase diagram– Isothermal section– Dew and bubble point calculations

Page 4: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Ternary Systems

• Applications of ternary systems:1. Steel Industry2. Refractories3. Ceramics4. Distillation5. Liquid - Liquid Extraction6. Leaching7. Tea !!!

Page 5: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Ternary Systems

• Degree of Freedom Analysis:• F = C – P + 2 – r• = 3 – P + 2 -1 [ Isobaric diagrams]• F = 4 - P

Page 6: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Ternary Systems

• Degree of Freedom Analysis:• Fmax = 3

• These 3 independent variables are : T , x1 , x2

Page 7: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Three component system

• Method of representation :• Use the Composition triangle

Page 8: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Three component system

Page 9: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Three component system

1 – Any vertex represent a one component system.

Page 10: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Three component system

2 – Any side represent a two component system

Page 11: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Three component system

3 – Any point inside the triangle represent a ternary system

Page 12: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

4 – Any parallel line to a side of the triangle , represents a locus of constant percentage of the third component

Page 13: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

In this figure:• We have a line parallel to the side BC• Then , it contains a fixed percentage of A ( 30% ) • This line is a locus for all of the mixtures containing 30 % A

Page 14: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

In this figure:• We have a line parallel to the side AB• Then , it contains a fixed percentage of C ( 30% ) • This line is a locus for all of the mixtures containing 30 % C

Page 15: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Three component system

5 – Any point inside the triangle can be located knowing two compositions only.

Page 16: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Locate the mixture of the following composition : 30% A & 50 % B

Page 17: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Locate the mixture of the following composition : 30% A & 50 % B

Page 18: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Locate the mixture of the following composition : 30% A & 50 % B

Page 19: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

• The Binary Diagram :• Assumptions:– Total liquid solubility– Ideal system

Page 20: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

• The Binary Diagram :• Assumptions:– Total liquid solubility– Ideal system

Page 21: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

Page 22: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

Page 23: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

• Comparing binary and ternary diagram:• Vaporous curve vs Vaporous Surface• Liquidus line vs Vaporous Surface

Page 24: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

Page 25: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Vaporous Surface

Page 26: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

Page 27: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

Page 28: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

Page 29: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

• Comparing binary and ternary diagram: 1.Phases got on cooling :• V• L+V• L

Page 30: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

Page 31: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

• Comparing binary and ternary diagram: 1.Phases got on cooling :• V• L+V• L

Page 32: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Comparing binary and ternary diagrams:

2.Method to get composition and amounts:In binary system :

• Draw a tie line then use lever arm principleIn Ternary system:

• The first step is to draw the “ ISOTHERMAL SECTION”

Page 33: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems
Page 34: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems
Page 35: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

V

L

L + V

Page 36: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems
Page 37: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems
Page 38: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

V

L

L + V

L

V

L +V

Page 39: PHASE EQUILIBRIA. Ternary Systems Types:  (Liquid –Vapor) ternary systems  (Liquid – Solid ) ternary systems

Liquid Vapor Equilibrium in Ternary systems

• How to draw a tie line :• Lever Arm Principle: