An Absorption column is required to reduce the fraction of a poliutant gas in air. The initial percent of the Gas is 5 % and 99 % Reduction of the input is required. The liquid (water) used in the absorption column, is free of the solute (pollutant). Given the following : GM = 100 Moles/h m2 : LM = 800 Moles/h.m2, kya = 400 Moles/h.m3, kxa = 1600 Moles/h.m3, and y = 4 x, Find : (a) The Column Height = ZT and (b) The fraction of the Overall Resistance offered in the Liquid film.

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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An Absorption column is required to reduce the fraction of a polutant gas in air. The initial percent of the Gas is 5 % and 99 % Reduction of the input is
required. The liquid (water) used in the absorption column, is free of the solule (pollutant).
Given the following : GM = 100 Moles/h m2 ; LM = 800 Moles/n.m2, kya = 400 Moles/h.m3; kxa = 1600 Moles/h m3, and y = 4 x. Find : (a) The Column
Height = ZT and (b) The fraction of the Overall Resistance offered in the Liquid film.
Transcribed Image Text:An Absorption column is required to reduce the fraction of a polutant gas in air. The initial percent of the Gas is 5 % and 99 % Reduction of the input is required. The liquid (water) used in the absorption column, is free of the solule (pollutant). Given the following : GM = 100 Moles/h m2 ; LM = 800 Moles/n.m2, kya = 400 Moles/h.m3; kxa = 1600 Moles/h m3, and y = 4 x. Find : (a) The Column Height = ZT and (b) The fraction of the Overall Resistance offered in the Liquid film.
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