Experimental Value of Hoc. Using the experimental data given in Problem 10.6-8, calculate the number of transfer units NoG and the experimental value of HOG- Ans. Hoc 1.265 m = OG

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
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10.6-11. Experimental Value of Hoc. Using the experimental data given in Problem
10.6-8, calculate the number of transfer units Noc and the experimental value of
HOG-
OG
1.265 m
Ans. Hog
=
Transcribed Image Text:10.6-11. Experimental Value of Hoc. Using the experimental data given in Problem 10.6-8, calculate the number of transfer units Noc and the experimental value of HOG- OG 1.265 m Ans. Hog =
10.6-8. Experimental Overall Mass-Transfer Coefficient. In a tower 0.254 m in diam-
eter absorbing acetone from air at 293 K and 101.32 kPa using pure water, the
following experimental data were obtained. Height of 25.4-mm Raschig
rings = 4.88 m, V' = 3.30 kg mol air/h, y₁ = 0.01053 mol frac acetone, y₂ =
0.00072, L 9.03 kg mol water/h, x₁ 0.00363 mol frac acetone. Calculate the
experimental value of K, a.
=
Transcribed Image Text:10.6-8. Experimental Overall Mass-Transfer Coefficient. In a tower 0.254 m in diam- eter absorbing acetone from air at 293 K and 101.32 kPa using pure water, the following experimental data were obtained. Height of 25.4-mm Raschig rings = 4.88 m, V' = 3.30 kg mol air/h, y₁ = 0.01053 mol frac acetone, y₂ = 0.00072, L 9.03 kg mol water/h, x₁ 0.00363 mol frac acetone. Calculate the experimental value of K, a. =
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