The outlet gas stream of a process contains ethanol vapor and air, at 35°C and atmospheric pressure, 86% saturated. The stream flowing at 312 L/min enters a compressor where its pressure is increased 44 times the initial pressure. A heat exchanger helps remove some of the heat generated, keeping the outlet gas at 68°C. Determine the molar flow rate of the condensate from this process.

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
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The outlet gas stream of a process contains ethanol
vapor and air, at 35°C and atmospheric pressure, 86%
saturated. The stream flowing at 312 L/min enters a
compressor where its pressure is increased 44 times the
initial pressure. A heat exchanger helps remove some of
the heat generated, keeping the outlet gas at 68°C.
Determine the molar flow rate of the condensate from
this process.
Type your answer in mol/min, 3 decimal places
For ethanol:
log P(mmHg) =A-
A = 8.1122
B=1592.864
C=226.184
B
C+T(°C)
Transcribed Image Text:The outlet gas stream of a process contains ethanol vapor and air, at 35°C and atmospheric pressure, 86% saturated. The stream flowing at 312 L/min enters a compressor where its pressure is increased 44 times the initial pressure. A heat exchanger helps remove some of the heat generated, keeping the outlet gas at 68°C. Determine the molar flow rate of the condensate from this process. Type your answer in mol/min, 3 decimal places For ethanol: log P(mmHg) =A- A = 8.1122 B=1592.864 C=226.184 B C+T(°C)
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