A distillation has been designed to remove 95% of component A content in feed am which consists 50 wt.% of A and 50 wC% of B. Data shown below have been collected - one hour of operation. Calculate the composition of components A and B in top and ttom streams. Top 6/10 of feed =? う4 x =? Feed ? kg/h %3D x = 50 wt. % %3D x = = 50 wt.% Bottom =640 of feed
A distillation has been designed to remove 95% of component A content in feed am which consists 50 wt.% of A and 50 wC% of B. Data shown below have been collected - one hour of operation. Calculate the composition of components A and B in top and ttom streams. Top 6/10 of feed =? う4 x =? Feed ? kg/h %3D x = 50 wt. % %3D x = = 50 wt.% Bottom =640 of feed
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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Transcribed Image Text:Q2
Shown below is a flowchart of a process in which acetic acid (A) is extracted from a mixture
of acetic acid and water (B) into 1-hexanol (C), a liquid immiscible with water.
mc(g CH3OH/min)
mg(g/min)
0.096 g CH,COOH/g
0.904 g CH1,OH/g
mp =? g/min
mgig/min)
0.115 g CH,COOH/g
0.885 g H,O/g
0.005 g CH,COOH/g
0.995 g H,O/g
1. What is the maximum number of independent material balances that can be written for
this process?
2. Calculate mc; mg; and ṁr; using the given mixture feed rate as a basis and writing
balances in
order such that you never have an equation that involves more than one
unknown variable.
3. Calculate the difference between the amount of acetic acid in the feed mixture and that
in the 0.5% mixture and show that it equals the amount that leaves in the 9.6% mixture.

Transcribed Image Text:stream, which consists 50 wt.% of A and 50 wt.% of B. Data shown below have been collected
A distillation has been designed to remove 95% of component A content in feed
Q1
for one hour of operation. Calculate the composition of components A and B in top and
bottom streams.
Top 6/10 of feed
=? oう 4
x = ?
Feed = ? kg/h
x = 50 wt.%
x = 50 wt. %
Bottom =640 of feed
= ?
:?
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