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Determination of the Vapor Pressure of Pure Liquid

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Title: Author: lianghuiying Last modified by: fxzm Created Date: 4/15/2003 12:48:13 PM Document presentation format: Company – PowerPoint PPT presentation

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Title: Determination of the Vapor Pressure of Pure Liquid


1
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Determination of the Vapor Pressure of Pure
Liquid
2
Contents
  • Purposes and Demands
  • Principle
  • Apparatus and Reagent
  • Procedure
  • Data Records and Processing
  • Questions
  • Attentions
  • Demonstrated
  • ??

3
  • Purposes and Demands

? Understand the vapor pressure of pure liquid
and gas-liquid equilibrium. ? Acquaint with the
relationship of the vapor pressure and
temperature by the Clausius-Clapeyron equation.
4
  • ? Determine the saturated vapor pressure of
    ethanol by the precision digital pressure gage
    under different temperature. Master the vacuum
    technique for determination.
  • ?Determine the molar heat of vaporization and
    boiling point by the method of illustration.

5
Principle
  • The molecules of a pure liquid filled in an
    equilibrium tube will transform into the phase of
    gas and liquid when the pressure of the vapor in
    the tube reaches a definite value. This pressure
    is called the vapor pressure of the liquid at a
    given temperature.

6
  • Temperature is the main factor of the vapor
    pressure.
  • The vapor pressure increases up to the
    critical point as the temperature increases.
  • The vaporization with the bubbles formation
    will occurs in the interior of the liquid as well
    as at the surface when the liquid may be heated
    up to a temperature and its vapor pressure is
    equal to the external pressure.

7
  • It is quite the boiling point of the liquid
    at the specified external pressure.
  • The heat consumed to vaporize 1 molar liquid
    is called the gasification latent heat(?Hv).

8
  • Clausius-Clapeyron equation is known as

Where P is the vapor pressure of liquid, T
stands for the absolute temperature and R is the
gas constant of 8.314JK-1mol-1. C is the
integral constant .

9
  • A plot of lgP versus 1/T will be a straight
    line. ?Hv can be determined by the line slope m.

10
Apparatus and Reagent
  • The measuring device of the Vapor pressure
  • thermostatic bath
  • Precision digital pressure gage
  • buffer gas tank
  • Thermometer
    Vacuum pump
  • Ethanol

11
Sketch-maps of Equipments
12
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13
DF-AF precision digital pressure gageThe front
panel of the device
14
  • 1)Units key to choose a measuring unit.
  • 2)Zero key to deduct pressure at zero level.
  • 3)Reset key to restart-up.

15
  • 4)Display screen to display pressure data.
  • 5)Indicator light to display the unit of
    the pressure.

16
  • 1)   Electrical outlet
  • 2)   Facet contacted with host computer
  • 3)   Facet contacted with pressure canal
  • 4)   Pressure-regulating
  • 5) Fuse

17
Procedure
  • 1.Assemble the equipments on the base of the
    Sketch-maps of equipments above.
  • 2.Fill with the ethanol to the two-third volume
    of the tube . Startup the vacuum pump.

18
  • 1. Check the seal of the buffer gas tank
  • 1) Test the gas leakage of the buffer gas tank
  • Open the valve 2 and screw on the valve 1,
    then startup the vacuum pump. When the pressure
    is up to the range of 100kpa-200kpa, stop pumping
    and close the air inlet.

19
  • The system has good seal if the pressure
    falls down at less than 0.01kpa/s, or else we
    must workout the problem before next procedure.

20
  • 2) Check seal of the gas trimmer
  • Open the valve 1 when the pump and air inlet
    and the valve 2 are close. Regulate the pressure
    which is less than the 1/2 pressure of tank by
    the valve 1.

21
  • It shows that the trimmer has the good seal if
    the pressure falls down at less than 0.01kPa/4s,
    or else the question should be resolved before
    your experiment.

22
  • 3) Check the seal of the determined part
  • The pressure of the trimmer is equal to
    that of the gas tank when the valve 2 is open and
    the valve 1 is close. Then shut the valve 2 and
    and open the valve 1, and release pressure
    moderately.

23
  • Observe the pressure reading. It shows that
    it has the good seal if the pressure change is
    less than or equal to 0.01kpa/4s. If not, we must
    find out and resolve the problem before next
    step.

24
  • 4.     Determination step
  • Set up the temperature of the water bath at
    30?. Startup the vacuum pump and the condenser
    tube. Open the valve 2, and carefully let the
    air bubble steadily through the U tube. Then
    close valve 2 and open valve 1.

25
  • After 3-4 min, adjust the two valves until
    the two levels of the liquid in the U tube are
    the same. Read and record the temperature and the
    pressure.
  • Repeat the same experiment ,in which the
    pressure difference is less than the range of
    67pa.

26
  • On the base of the above procedure, determine the
    vapor pressure respectively at the temperature of
    30ºC,35ºC,40ºC,45ºC,50ºC.
  • Release pressure in the gas tank and disassemble
    the equipments. Stop the condenser tube and cut
    down the current.

27
Data Records and Processing
  • 1) Records
  • Room temperature
  • Atmospheric pressure

28
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29
Processing
1.     Proofread atmospheric pressure based
on the equation Pp(273.15/K)P(T)1-1.6310-4(t-27
3.15K)
30
2?Vapour pressure (Pp) of ethanol at difference
temperatures
31
Draw a plot of lgP versus 1/T and figure out the
slope m. m-?Hv2.303R lgPlg101.325 From the
plot , 1/T And boiling point T
32
Questions
  • 1. What condition is the Clausius-Clapeyron
    equation based on?
  • 2. Whats the result if air in the U tube has not
    extracted completely?

33
  • 3. Can the method be used to determine the
    solutions vapor pressure?
  • 4. Whats the use of the buffer gas tank?

34
Attentions
  • 1. The system must have the good seal.
  • 2. Determination should be done after the liquid
    is boiled for 3-4 min.

35
  • 3.Release a little pressure in order to avoid the
    liquid boiling too rapidly.
  • 4.Regulate the temperature accurately.

36
  • 5. The U tube must be placed under the level of
    the water bath.
  • 6. Examine carefully the two valves 1 and 2, and
    see if they have leakage.
  • 7. Screw on the valves moderately.

37
  • 8. Determine the data when the pressure reading
    is steady.
  • 9. If air is pumped into the U tube, you need
    vacuumize it again before determination.
  •  

38
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