Q4) Gas ( 55 kg/kmol) at 50 kg/h with 150 °C and 12 bar enter a 3 m packed bed of 5 mm spherical particle diameter with a voide fraction 0.4 inside diameter of tube is 5 cm. viscosity of 2.3X10$ Ns/m? and kg/m. Calculate the outlet pressure.
Q4) Gas ( 55 kg/kmol) at 50 kg/h with 150 °C and 12 bar enter a 3 m packed bed of 5 mm spherical particle diameter with a voide fraction 0.4 inside diameter of tube is 5 cm. viscosity of 2.3X10$ Ns/m? and kg/m. Calculate the outlet pressure.
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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![Q4) Gas ( 55 kg/kmol) at 50 kg/h with 150 °C and 12 bar enter a 3 m packed bed
of 5 mm spherical particle diameter with a voide fraction 0.4 inside diameter of
tube is 5 cm. viscosity of 2.3X10$ Ns/m? and kg/m. Calculate the outlet
pressure.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5c97418f-5074-4216-8ce0-0b9a6e1c73cc%2F22684df0-34f5-4dde-a5ac-a451e1c6c551%2Fsfhmm5m.jpeg&w=3840&q=75)
Transcribed Image Text:Q4) Gas ( 55 kg/kmol) at 50 kg/h with 150 °C and 12 bar enter a 3 m packed bed
of 5 mm spherical particle diameter with a voide fraction 0.4 inside diameter of
tube is 5 cm. viscosity of 2.3X10$ Ns/m? and kg/m. Calculate the outlet
pressure.
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