Q1: The solute HCI(A)is diffusing through a thin film of water (B) 2mm thick at 283K. The concentration of HCl at point 1 at one boundary of the film is 12wt% HCI ( density p-1060.7kg/m³) and at the other boundary at point 2 is 6wt % HCI (density) p-1030.3kg/m³) the diffusion coefficient of HCI in water is 2.5*10 m/s. Assuming steady state and one boundary impermeable to water. Calculate the flux of HCI in kmol/s.m². The molecular weight of HCI is 36.47. 02: A stream of aqueous math

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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Q1: The solute HCI(A)is diffusing through a thin film of water (B) 2mm thick at 283K.
The concentration of HCl at point 1 at one boundary of the film is 12wt% HCI ( density
p-1060.7kg/m³) and at the other boundary at point 2 is 6wt % HCI (density)
p-1030.3kg/m³) the diffusion coefficient of HCI in water is 2.5*10 m/s. Assuming
steady state and one boundary impermeable to water. Calculate the flux of HCI in
kmol/s.m². The molecular weight of HCI is 36.47.
02: A stream of aqueous math
Transcribed Image Text:Q1: The solute HCI(A)is diffusing through a thin film of water (B) 2mm thick at 283K. The concentration of HCl at point 1 at one boundary of the film is 12wt% HCI ( density p-1060.7kg/m³) and at the other boundary at point 2 is 6wt % HCI (density) p-1030.3kg/m³) the diffusion coefficient of HCI in water is 2.5*10 m/s. Assuming steady state and one boundary impermeable to water. Calculate the flux of HCI in kmol/s.m². The molecular weight of HCI is 36.47. 02: A stream of aqueous math
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