mixture of 60 mole % n-heptane and 40 mole % toluene is vaporized at 101.325 kPa (absolute) unt les of vapor and 60 moles of liquid in equilibrium with each other are produced. This occurs in a s ge system and the vapor and liquid are kept in contact until equilibrium is achieved. Calculate the mposition of the vapor and liquid. te: Assume the system exhibits ideal behavior (which it mostly does), e.g. Raoult's Law applies an toine's Vapor Pressure correlation is a sufficiently accurate model of component vapor pressure.
mixture of 60 mole % n-heptane and 40 mole % toluene is vaporized at 101.325 kPa (absolute) unt les of vapor and 60 moles of liquid in equilibrium with each other are produced. This occurs in a s ge system and the vapor and liquid are kept in contact until equilibrium is achieved. Calculate the mposition of the vapor and liquid. te: Assume the system exhibits ideal behavior (which it mostly does), e.g. Raoult's Law applies an toine's Vapor Pressure correlation is a sufficiently accurate model of component vapor pressure.
Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
Section: Chapter Questions
Problem 1.1P
Related questions
Question
Solve step by step clearly

Transcribed Image Text:2) Flash Distillation (or Single-Stage Contact)
A mixture of 60 mole % n-heptane and 40 mole % toluene is vaporized at 101.325 kPa (absolute) until 40
moles of vapor and 60 moles of liquid in equilibrium with each other are produced. This occurs in a single-
stage system and the vapor and liquid are kept in contact until equilibrium is achieved. Calculate the
composition of the vapor and liquid.
Note: Assume the system exhibits ideal behavior (which it mostly does), e.g. Raoult's Law applies and an
Antoine's Vapor Pressure correlation is a sufficiently accurate model of component vapor pressure.

Transcribed Image Text:1
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A
ea7f5b94-6b57-4...-eb25dd80ad50 - Unsaved
B
Temperature
T (C)
98.5
99.8
101.2
102.5
103.9
105.2
106.6
107.9
109.3
110.7
C
Vapor Pressure
n-heptane
kPa
101.400
105.5
109.7
114.1
118.6
123.2
127.9
132.8
137.9
143.1
D
Toluene
kPa
70.745
73.732
76.818
80.005
83.297
86.694
90.200
93.817
97.548
101.394
fx 114.068562413087
E
X
1.000
0.871
0.747
0.628
0.513
0.403
0.297
0.194
0.095
0.000
go
LL
F
y
1.000
0.906
0.808
0.707
0.600
0.490
0.374
0.255
0.130
0.000
G
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