P5C.4" 1-Butanol and chlorobenzene form a minimum boiling azeotropic system. The mole fraction of 1-butanol in the liquid (x) and vapour (y) phases at 1.000 atm is given below for a variety of boiling temperatures (H. Artigas et al., J. Chem. Eng. Data 42, 132 (1997)). T/K 396.57 393.94 391.60 390.15 389.03 388.66 388.57 0.1065 0.1700 0.2646 0.3687 0.5017 0.6091 0.7171 y 0.2859 0.3691 0.4505 0.5138 0.5840 0.6409 0.7070 Pure chlorobenzene boils at 404.86 K. (a) Construct the chlorobenzene-rich portion of the phase diagram from the data. (b) Estimate the temperature at which a solution whose mole fraction of 1-butanol is 0.300 begins to boil. (c) State the compositions and relative proportions of the two phases present after a solution initially 0.300 1-butanol is heated to 393.94 K.

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P5C.4* 1-Butanol and chlorobenzene form a minimum boiling azeotropic
system. The mole fraction of 1-butanol in the liquid (x) and vapour (y) phases
at 1.000 atm is given below for a variety of boiling temperatures (H. Artigas
et al., J. Chem. Eng. Data 42, 132 (1997)).
TIК 396.57
393.94 391.60
390.15
389.03 388.66
388.57
0.1065
0.1700
0.2646
0.3687
0.5017 0.6091
0.7171
y
0.2859
0.3691
0.4505
0.5138 0.5840 0.6409
0.7070
Pure chlorobenzene boils at 404.86 K. (a) Construct the chlorobenzene-rich
portion of the phase diagram from the data. (b) Estimate the temperature
at which a solution whose mole fraction of 1-butanol is 0.300 begins to boil.
(c) State the compositions and relative proportions of the two phases present
after a solution initially 0.300 1-butanol is heated to 393.94 K.
Transcribed Image Text:P5C.4* 1-Butanol and chlorobenzene form a minimum boiling azeotropic system. The mole fraction of 1-butanol in the liquid (x) and vapour (y) phases at 1.000 atm is given below for a variety of boiling temperatures (H. Artigas et al., J. Chem. Eng. Data 42, 132 (1997)). TIК 396.57 393.94 391.60 390.15 389.03 388.66 388.57 0.1065 0.1700 0.2646 0.3687 0.5017 0.6091 0.7171 y 0.2859 0.3691 0.4505 0.5138 0.5840 0.6409 0.7070 Pure chlorobenzene boils at 404.86 K. (a) Construct the chlorobenzene-rich portion of the phase diagram from the data. (b) Estimate the temperature at which a solution whose mole fraction of 1-butanol is 0.300 begins to boil. (c) State the compositions and relative proportions of the two phases present after a solution initially 0.300 1-butanol is heated to 393.94 K.
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