Artigo Revisado por pares

Permeation Flux of Organic Molecules through Silica-surfactant Nanochannels in a Porous Alumina Membrane

2006; Springer Nature; Volume: 22; Issue: 12 Linguagem: Inglês

10.2116/analsci.22.1495

ISSN

1348-2246

Autores

Tomohisa Yamashita, Shuji Kodama, Mikiya Ohto, Eriko Nakayama, Sumiyo Hasegawa, Nobutaka Takayanagi, Tomoko Kemmei, A. Yamaguchi, Norio Teramae, Yukio Saitō,

Tópico(s)

Analytical Chemistry and Sensors

Resumo

The permeation fluxes of phenol, benzene sulfonate (BS) and benzene disulfonate (BDS) through a porous anodic alumina membrane with the perpendicularly oriented silica-surfactant nanochannel assembly membrane (NAM) were measured in water-ethanol mixture media. The permeation flux depended on solute charges and on solvent composition. As the ethanol ratio increased, the fluxes of BS and BDS increased and the flux of phenol decreased. The results of extraction/elution experiments also depended on the solute charges and the solvent composition. Chromatographic experiments in n-hexane showed that dipole and hydrophobic interactions affect the retention of solutes. Permeation of the solute across the NAM in water-ethanol mixture is likely to be determined by various factors such as dipole interaction, hydrophobic interaction, solvation, and anion-exchange efficiencies.

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