TY - JOUR
T1 - Permeation of gases through a supported alumina membrane
AU - Huang, Ting Chia
AU - Chen, Huey Ing
PY - 1995/1/1
Y1 - 1995/1/1
N2 - The permeations of He, N2, and CO2 through the supported alumina membrane were studied in this work. The permeabilities of gases were measured under temperature ranges of 299.4-372.7 K and pressure up to 220 kPa. Experimental results showed that the gas transported through the alumina membrane can be described by the combination of Knudsen diffusion, Poiseuille flow, and surface diffusion. However, Knudsen diffusion played the most important role on the permeabilities of gases. A semi-empirical expression of permeability was obtained as a function of temperature and pressure for each pure gas. The permeate fluxes of He-N2, He-CO2, and N2-CO2 mixtures were calculated from permeabilities of pure gases with assumptions of perfect gas behavior and complete mixing permeator. The predicted data were coincidence with the experimental results except for N2-CO2 mixture. The deviation of permeability between the predicted and the experimental data for N2-CO2 system can be reduced by taking into account of viscosity effect.
AB - The permeations of He, N2, and CO2 through the supported alumina membrane were studied in this work. The permeabilities of gases were measured under temperature ranges of 299.4-372.7 K and pressure up to 220 kPa. Experimental results showed that the gas transported through the alumina membrane can be described by the combination of Knudsen diffusion, Poiseuille flow, and surface diffusion. However, Knudsen diffusion played the most important role on the permeabilities of gases. A semi-empirical expression of permeability was obtained as a function of temperature and pressure for each pure gas. The permeate fluxes of He-N2, He-CO2, and N2-CO2 mixtures were calculated from permeabilities of pure gases with assumptions of perfect gas behavior and complete mixing permeator. The predicted data were coincidence with the experimental results except for N2-CO2 mixture. The deviation of permeability between the predicted and the experimental data for N2-CO2 system can be reduced by taking into account of viscosity effect.
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M3 - Article
AN - SCOPUS:0029192314
SN - 1876-1070
VL - 26
SP - 47
EP - 56
JO - Journal of the Taiwan Institute of Chemical Engineers
JF - Journal of the Taiwan Institute of Chemical Engineers
IS - 1
ER -