A stream of humid air at 90°C and 5260 mm Hg contains 10% water by volume and is sent to a condenser to remove a portion of the water. Calculate the unknowns in the diagram below (n1, n2, YH20) if the air is compressed at 8400 mm Hg at constant temperature inside the condenser. Circle your answers and upload work as pdf. Antoine constants for H20 at 60°C to 150°C: A = 7.96681; B = 1668.210; C = 228.000; for temperatures in °C and pressures in mm Hg. n2 mol YH20 mol H20/mol (1-YH20) mol dry air/mol T = 90 °C P = 8400 mm Hg Basis: 100 mol 0.90 mol dry air/mol 0.10 mol H20/mol T= 90 °C Condenser P = 5260 mm Hg ni mol H20
A stream of humid air at 90°C and 5260 mm Hg contains 10% water by volume and is sent to a condenser to remove a portion of the water. Calculate the unknowns in the diagram below (n1, n2, YH20) if the air is compressed at 8400 mm Hg at constant temperature inside the condenser. Circle your answers and upload work as pdf. Antoine constants for H20 at 60°C to 150°C: A = 7.96681; B = 1668.210; C = 228.000; for temperatures in °C and pressures in mm Hg. n2 mol YH20 mol H20/mol (1-YH20) mol dry air/mol T = 90 °C P = 8400 mm Hg Basis: 100 mol 0.90 mol dry air/mol 0.10 mol H20/mol T= 90 °C Condenser P = 5260 mm Hg ni mol H20
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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