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Ceramic membranes characterization

E. Jakobs, W.J. Koros, Ceramic membrane characterization via the bubble point technique, Journal of Membrane Science, 124 (1997) 149-159. [Pg.567]

Terpstra, R. A., B. C. Bonekamp and H. J. Veringa. 1988. Preparation, characterization and some properties of tubular alpha alumina ceramic membranes for microfiltration and as a support for ultrafiltration and gas separation membranes. Desalination 70 395-404. [Pg.62]

Venkataraman, K., W. T. Choate, E. R. Torre, R. D. Husung and H. R. Batchu. 1988. Characterization studies of ceramic membranes A novel technique using a Coulter porometer. J. Membrane Sci. 39(3) 259-71. [Pg.94]

Sui X and Huang X. The characterization and water purification behaviour of gradient ceramic membranes. Sep. Purif. Technol. 2003 32 73-79. [Pg.175]

Tsuru T, Tomoya H, Tomohisa Y, and Masashi A. Permporometry characterization of microporous ceramic membranes. J Membr Sci 2001 186 257-265. [Pg.313]

Roque-MaUierbe R., del VaUe W., Marquez F., Duconge J., and Goosen M.F.A., S3mthesis and characterization of zeolite-based porous ceramic membranes. Separation Science and Technology 41 2006... [Pg.344]

A combination of characterization techniques for the pore structure of mesoporous membranes is presented. Equilibrium and dynamic methods have been performed for the characterisation of model membranes with well-defined structure while three-dimensional network models, combined with aspects from percolation theory can be employed to obtain structural information on the porous network topology as well as on the pore shape. Furthermore, the application of ceramic membranes in separations of condensable from noncondensable vapors is explored both theoretically and experimentally. [Pg.429]

A. Bottino, G. Capannelli, A. Grosso, O. Monticelli, O. Cavalleri, R. Rolandi and R. Soria, Surface characterization of ceramic membranes by atomic force microscopy. /. Membr. [Pg.112]

P. Cini, S.R. Blaha, M.P. Harold and K. Venkataraman, Preparation and characterization of modified tubular ceramic membranes for use as catalyst support. /. Membr. Sci, 55 (1991) 199. [Pg.256]

C.L. Lin, D.L. Flowers and P.K.T. Liu, Characterization of ceramic membranes. II. Modified commercial membranes with pore size imder 40 A. /. Membr. Sci., 92 (1994) 45. R.J.R. Ulhom, K. Keizer and A.J. Burggraff, Gas transport and separation with ceramic membranes. Part II. Synthesis and separation properties of microporous membranes. /. Membr. Sci., 66 (1992) 271. [Pg.257]

R. S.A. de Lange, J.H.A. Hekkink, K. Keizer and A.J. Burggraaf, Formation and characterization of supported microporous ceramic membranes prepared by sol-gel modification techniques. J. Membr. Sci., 99 (1995) 57. [Pg.257]

The formation of ceramic membranes for microfiltration, ultrafiltration or nanofiltration by association of various granular layers is now a common procedure [10]. Each layer is characterized by its thickness, h, its porosity, 8, and its mean pore diameter, dp. These parameters are controlled by the particle size, d, and the synthesis method. Each layer induces a resistance which may be predicted through the classical Carman-Kozeny model ... [Pg.575]

Mercury porosimetry is a well-adapted method to characterize the pore size and pore size distributions of microfiltration ceramic membranes. In this method,... [Pg.522]

Collins JP, Way JD. Preparation and characterization of a composite palladium-ceramic membrane. Ind Eng Chem Res. 1993 32 3006. [Pg.195]

Nandi BK, Uppaluri R, and Purkait MK. Preparation and characterization of low cost ceramic membranes for microfiltration applications. A/ / /. Clay Sci. 2008 32 102-110. [Pg.251]

Ebrahimi M, Ashaghi KS, Engel L, WUlershausen D, Mund P, Bolduan P, and Czermak P. Characterization and application of different ceramic membranes for the oil-field produced water treatment. Desalination 2009 245 533-540. [Pg.253]


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See also in sourсe #XX -- [ Pg.687 ]




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