It is desired to extract benzoic acid from toluene using water as the extracting solvent Data: Analysis of feed: benzoic acid = 10% toluene = 90% Rate of feed = 120 gpm Rate of solvent = 20 gpm Assumptions: 1. All flow rates are steady 2. Toluene and water are immiscible 3. Feed concentration remains constant 4. Two streams leaving each stage are in equilibrium with each other and k = 0.125 The % of the acid extracted With a single stage system a. 59% b. 69% C. 45% d. 65%

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
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Explain your answer in this problem
It is desired to extract benzoic acid from toluene using water as the extracting
solvent
Data:
Analysis of feed:
benzoic acid = 10%
toluene = 90%
%3D
Rate of feed = 120 gpm
Rate of solvent = 20 gpm
Assumptions:
1. All flow rates are steady
2. Toluene and water are immiscible
3. Feed concentration remains constant
4. Two streams leaving each stage are in equilibrium with each other
and k = 0.125
The % of the acid extracted
With a single stage system
a. 59%
b. 69%
C. 45%
d. 65%
Transcribed Image Text:Explain your answer in this problem It is desired to extract benzoic acid from toluene using water as the extracting solvent Data: Analysis of feed: benzoic acid = 10% toluene = 90% %3D Rate of feed = 120 gpm Rate of solvent = 20 gpm Assumptions: 1. All flow rates are steady 2. Toluene and water are immiscible 3. Feed concentration remains constant 4. Two streams leaving each stage are in equilibrium with each other and k = 0.125 The % of the acid extracted With a single stage system a. 59% b. 69% C. 45% d. 65%
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