19.1-4. Diffusion of Methane Through Nondiffusing Helium. Methane gas is diffusing in a straight tube 0.1 m long containing helium at 298 K and a total pressure of 1.01325 × 105 Pa. The partial pressure of CH4 is 1.400 × 104 Pa at one end and 1.333 × 103 Pa at the other end. Helium is insoluble in one boundary, and hence is nondiffusing or stagnant. The diffusivity is given in Table 18.2-1. Calculate the flux of methane in kg mol/s · m² at steady state.

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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19.1-4. Diffusion of Methane Through Nondiffusing Helium. Methane
gas is diffusing in a straight tube 0.1 m long containing helium at
298 K and a total pressure of 1.01325 × 105 Pa. The partial pressure
of CH4 is 1.400 × 104 Pa at one end and 1.333 × 103 Pa at the other
end. Helium is insoluble in one boundary, and hence is nondiffusing
or stagnant. The diffusivity is given in Table 18.2-1. Calculate the
flux of methane in kg mol/s · m² at steady state.
Transcribed Image Text:19.1-4. Diffusion of Methane Through Nondiffusing Helium. Methane gas is diffusing in a straight tube 0.1 m long containing helium at 298 K and a total pressure of 1.01325 × 105 Pa. The partial pressure of CH4 is 1.400 × 104 Pa at one end and 1.333 × 103 Pa at the other end. Helium is insoluble in one boundary, and hence is nondiffusing or stagnant. The diffusivity is given in Table 18.2-1. Calculate the flux of methane in kg mol/s · m² at steady state.
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