Q2) Sulfur dioxide (A) diffuses through a stagnant layer of air (B) of 2 cm thickness at 45°C and 1.2 bar total pressure. The partial pressures of SO2 on the two sides of the air layer are PAo = 0.85 bar and PAL =0.15 bar, respectively. Considering Air is a non-diffusing component and Ds02-Air = 3.5x10-S m²/sec, calculate: i- iv- The molar flux of SO2with respect to an observer moving with the mass average velocity.

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Sulfur dioxide (A) diffuses through a stagnant layer of air (B) of 2 cm thickness at 45oC and 1.2 bar total pressure. The partial pressures of SO2 on the two sides of the air layer are PA0 = 0.85 bar and PAL =0.15 bar, respectively. Considering Air is a non-diffusing component and DSO2-Air = 3.5×10-5 m2/sec, calculate:

 

1) The molar flux of SO2 with respect to an observer moving with the mass average velocity.

Q2)
Sulfur dioxide (A) diffuses through a stagnant layer of air (B) of 2 cm thickness at 45°C
and 1.2 bar total pressure. The partial pressures of SO2 on the two sides of the air layer are
0.85 bar and PAL =0.15 bar, respectively. Considering Air is a non-diffusing
PAO
component and Dso2-Air = 3.5x10-5 m2/sec, calculate:
|
i-
iv- The molar flux of SO2with respect to an observer moving with the mass average
velocity.
Transcribed Image Text:Q2) Sulfur dioxide (A) diffuses through a stagnant layer of air (B) of 2 cm thickness at 45°C and 1.2 bar total pressure. The partial pressures of SO2 on the two sides of the air layer are 0.85 bar and PAL =0.15 bar, respectively. Considering Air is a non-diffusing PAO component and Dso2-Air = 3.5x10-5 m2/sec, calculate: | i- iv- The molar flux of SO2with respect to an observer moving with the mass average velocity.
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