A solvent recovery system delivers a gas saturated with benzene (C6H6) vapor that analyzes on a benzene free basis as follows: CO2 - 15%; O2 - 4% and N2 - 81%. This gas is at 21oC and 750 mm Hg pressure. It is compressed to 5 atmospheres and cooled to 21oC after compression. How many kilograms of benzene are condensed by this process per 1000 m3 of the original mixture? Data: Vapor pressure of benzene at 21oC = 75 mm Hg.
A solvent recovery system delivers a gas saturated with benzene (C6H6) vapor that analyzes on a benzene free basis as follows: CO2 - 15%; O2 - 4% and N2 - 81%. This gas is at 21oC and 750 mm Hg pressure. It is compressed to 5 atmospheres and cooled to 21oC after compression. How many kilograms of benzene are condensed by this process per 1000 m3 of the original mixture? Data: Vapor pressure of benzene at 21oC = 75 mm Hg.
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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A solvent recovery system delivers a gas saturated with benzene (C6H6) vapor that analyzes on a benzene free basis as follows: CO2 - 15%; O2 - 4% and N2 - 81%. This gas is at 21oC and 750 mm Hg pressure. It is compressed to 5 atmospheres and cooled to 21oC after compression. How many kilograms of benzene are condensed by this process per 1000 m3 of the original mixture?
Data: Vapor pressure of benzene at 21oC = 75 mm Hg.
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Step 1: Understand the Concept of Vapor-Liquid Equilibrium
VIEWStep 2: Establish the Basis of Calculation
VIEWStep 3: Determine the Initial Conditions
VIEWStep 4: Calculate the Molar Ratio of Benzene to Benzene-Free Gases
VIEWStep 5: Compute the Volume and Moles of Benzene in the Initial Mixture
VIEWStep 6: Calculate the Number of Moles of Benzene Condensed
VIEWStep 7: Determine the Mass of Benzene Condensed
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