Novel composite membranes for gas separation: Preparation and performance


Autoria(s): Da Costa, J. C. D.; Lu, G. Q.; Zhu, H. Y.; Rudolph, V.
Data(s)

01/01/1999

Resumo

High performance composite membranes based on molecular sieving silica (MSS) were synthesized using sols containing silicon co-polymers (methyltriethoxysilane and tetraethylorthosilicate). Alpha alumina supports were treated with hydrochloric acid prior to sol deposition. Permselectivity of CO2 over CH4 as high as 16.68 was achieved whilst permeability of CO2 up to 36.7 GPU (10(-6) cm(3) (STP) cm(-2) . s(-1) . cm Hg-1) was measured. The best membrane's permeability was finger printed during various stages of the synthesis process showing an increase in CO2/CH4 permselectivity by over 25 times from initial support condition (no membrane film) to the completion of pore structure tailoring. Transport measurement results indicate that the membrane pretreated with HCl has highest permselectivity and permeation rate. In particular, there is a definite cut-off pore size between 3.3 and 3.4 angstroms which is just below the kinetic diameters of Ar and CH4. This demonstrates that the mechanism for the separation in the prepared composite membrane is molecular sieving (activated diffusion), rather than Knudsen diffusion.

Identificador

http://espace.library.uq.edu.au/view/UQ:35642

Idioma(s)

eng

Publicador

Kluwer Academic

Palavras-Chave #Chemistry, Applied #Chemistry, Physical #Materials Science, Multidisciplinary #Gas Separation #Membrane #Molecular Sieving Silica #Permeability And Permselectivity #Permeation #Precursors #C1 #250101 Chemical Thermodynamics and Energetics #670700 Industrial Chemicals and Related Products
Tipo

Journal Article