Cw. Lee et al., Characteristics of gas permeation using two-layered alumina membrane prepared by anodic oxidation, KOR J CHEM, 18(1), 2001, pp. 101-105
The microporous alumina membrane with asymmetrical structure, having upper
layer with pore diameter of 10 nm under and lower layer with pore diameter
of 36 nm, was prepared by anodic oxidation using DC power supply of constan
t current mode in an aqueous H2SO4 solution as a electrolyte. The aluminum
plate was pretreated with thermal oxidation, chemical polishing and electro
chemical polishing before anodic oxidation. The membranes were prepared by
controlling the current density such as a very low current density for uppe
r layer and a high current density for lower layer of membrane. By controll
ing the cumulative charge density, the thickness of upper layer of membrane
s was about 6 mum and the total thickness of membranes was about 80-90 mum.
We found from gas permeation experiments with the membranes prepared by ab
ove method that the mechanism of gas permeation of the all membranes prepar
ed under each condition complied with model of the Knudsen diffusion.