By Douglas R. Lloyd (Eds.)
content material: Membrane fabrics technology : an outline / Douglas R. Lloyd --
fabric choice for membrane-based gasoline separations / R.T. Chern, W.J. Koros, H.B. Hopfenberg, and V.T. Stannett --
choice and review of membrane fabrics for liquid separations / Douglas R. Lloyd and Timothy B. Meluch --
fragrant polyamide membranes / H.H. Hoehn --
Membrane fabrics for healing purposes in medication / Richard A. Ward, Pamela W. Feldhoff, and Elias Klein --
collection of helps for immobilized liquid membranes / J. Douglas manner, Richard D. Noble, and Blaine R. Bateman --
section inversion membranes / R.E. Kesting --
creation of microporous media by way of section inversion procedures / H. Strathmann --
function of microphase separation phenomena within the formation of porous polymeric membranes / Kenji Kamide and Sei-Ichi Manabe --
Microporous membranes through higher serious temperature part separation / W.C. Hiatt, G.H. Vitzthum, K.B. Wagener, okay. Gerlach, and C. Josefiak --
uneven membranes for fuel separations / Heinz Finken --
Evolution of composite opposite osmosis membranes / John E. Cadotte --
Dependence of dynamic membrane functionality on formation fabrics and systems / H. Garth Spencer --
hole fiber membrane examine : morphology, pervaporation, fuel separation, and sturdiness difficulties / Israel Cabasso --
New characterization equipment for uneven ultrafiltration membranes / C.A. Smolders and E. Vugteveen --
Pore quantity distribution in ultrafiltration membranes / Leos Zeman and Gabriel Tkacik --
Partial solubility parameter characterization of interpenetrating microphase membranes / Sonja Krause --
constitution and homes of perfluorinated ion-exchange membranes / Thein Kyu --
Ethanol-water separation by way of countercurrent opposite osmosis / Eric K.L. Lee, W.C. Babcock, and P.A. Bresnahan --
Electrically conductive membranes in response to polyacetylene chemistry / Ken B. Wagener --
Biofunctional man made membranes / Masuo Aizawa.
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Additional info for Materials Science of Synthetic Membranes
For example, nylon-6 i s dispersive due to the - ( C H ) ~ segment and polar due to the -CO-NH- linkage. S i m i l a r l y , copolymers may have polar segments as w e l l as nonpolar segments. In either case, a t t r a c t i o n due to dispersive forces between permeant and membrane material e x i s t s . 2 5 Hydrogen Bonding. The p o s s i b i l i t y of hydrogen bonding arises when the electron cloud of a hydrogen atom i s pulled away from the nucleus by a strongly electronegative atom to which the hydrogen i s covalently bonded.
J. Appl. Polym. Sci. 1980, 25, 1755. Chem, R. ; Koros, W. ; Hopfenberg, H. ; Stannett, V. T. J. Polym. , Phys. Ed. in press. Chem, R. T. D. Dissertation, North Carolina State Univer sity, Raleigh, NC, 1983. Chem, R. ; Koros, W. ; Hopfenberg, H. ; Stannett, V. T. J. Polym. ,Phys. Ed. 1983, 21, 753. Chem, R. ; Koros, W. ; Sanders, E. ; Yui, R. E. J. Membr. Sci. 1983, 15, 157. Antonson, C. ; Gardner, R. ; King, C. ; Ko, D. Y. Process Pes. Develop. 1977, 16, 463. Stern, S. ; Mauze, G. ; Frisch, H.
ACS Symposium Series; American Chemical Society: Washington, DC, 1985. 2. Membrane-Based Gas Separations CHERN ET AL. 37 preclude the need to r e l y upon mobility regulating mechanisms to a i d i n the separation process. This i s the basis f o r solvent extraction and l i q u i d membrane systems. The problems and considerations i n such cases are quite different from those i n standard bulk polymer systems and w i l l not be discussed here. Manipulation of the structure of standard bulk polymers to a l t e r their mobility s e l e c t i v i t y can be guided somewhat by correlations such as those shown i n Figures 6 and 7.
Materials Science of Synthetic Membranes by Douglas R. Lloyd (Eds.)