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Chapter 7 : Slide 1

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We generally look at the behavior of two component systems by either: ... The mole fractions in the gas phase , yA = pA/p and yB = pB/p, hence: Chapter 7 : Slide 8 ... – PowerPoint PPT presentation

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Title: Chapter 7 : Slide 1


1
Chapter 8 Phase Diagrams
2
OUTLINE SECTION 8.1 -Definitions SECTION 8.2
-The Phase Rule SECTION 8.3 -Two Component Systems
HOMEWORK EXERCISES 8.4,8.5,8.6 parts (a) only
3
Definitions
  • Phase A state of matter that is uniform
    throughout in both chemical composition and
    physical properties. Given the symbol P.
  • Component A chemically independent constituent
    of a system. Given the symbol C.
  • Variance Is the number of intensive variables
    that can be changed independently without
    disturbing the number of phases in equilibrium.
    Given the symbol F.

4
The Phase Rule
The phase rule relates the number of components,
phases and independent intensive variables F
C P 2
5
Consider the Phase diagram for water.
6
Two-component systems
C 2, F 4 - P
  • The maximum number of independent variables, F,
    is 3
  • (one phase). These are temperature, pressure and
    composition.
  • We generally look at the behavior of two
    component systems by either
  • Keeping T constant and seeing how the composition
    varies with p.
  • Keeping p constant and seeing how the composition
    varies with T.

7
Vapor Pressure diagrams
The partial vapor pressures of the components of
an ideal solution are related to the composition
by Raoults Law pA xApA pB xBpB
Now, p pA pB and xA xB 1 so p pB
(pA - pB) xA
The composition of the vapor The mole fractions
in the gas phase , yA pA/p and yB pB/p,
hence
8
Vapor Pressure diagrams
Mole fraction of A in vapor, yA
Mole fraction of A in liquid, xA
9
Vapor Pressure diagrams
Pressure
Composition
10
Temperature composition diagrams
Simple Distillation
Temperature
Composition
11
Temperature composition diagrams
Azeotropes
Temperature
Composition
12
Liquid-liquid phase diagrams
Temperature
Composition
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