sumed to be dilute water stream, is planned to be supplied at top of the tower (288 K and eric). They used an air stream, which is supplied opposite to the diluted water stream and its purpose mize the O2HCI3 concentration from 40 to 5 microgram/L. At the given temperature, the Henry's law for O2HCI3-air system is 11.7 x 10-3 atm/(mol/m³). ermine the concentration of the exiting air stream. x 10-6 b. 2.76 x 10-6 с. 3.78 х 10-8 d. 4.02 x 10-6

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
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A group of engineers wants to recover O2HCI3, from an underground wastewater. This underground
water assumed to be dilute water stream, is planned to be supplied at top of the tower (288 K and
atmospheric). They used an air stream, which is supplied opposite to the diluted water stream and its purpose
is to minimize the O2HCI3 concentration from 40 to 5 microgram/L. At the given temperature, the Henry's law
constant for O2HCI3-air system is 11.7 x 10-3 atm/(mol/m³).
Determine the concentration of the exiting air stream.
а. 1.15 х 10-6
b. 2.76 x 10-6
с. 3.78 х 10
d. 4.02 x 10-6
Transcribed Image Text:A group of engineers wants to recover O2HCI3, from an underground wastewater. This underground water assumed to be dilute water stream, is planned to be supplied at top of the tower (288 K and atmospheric). They used an air stream, which is supplied opposite to the diluted water stream and its purpose is to minimize the O2HCI3 concentration from 40 to 5 microgram/L. At the given temperature, the Henry's law constant for O2HCI3-air system is 11.7 x 10-3 atm/(mol/m³). Determine the concentration of the exiting air stream. а. 1.15 х 10-6 b. 2.76 x 10-6 с. 3.78 х 10 d. 4.02 x 10-6
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