Ion transport modelling through nanofiltration membranes |
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Authors: | Y. Garba S. Taha N. Gondrexon G. Dorange |
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Affiliation: | ENSCR Laboratoire de Chimie des Eaux et de l'Environnement Avenue du Général Leclerc 35700, Rennes, France |
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Abstract: | The aim of this work is to study the transport mechanism of ions through nanofiltration membranes. A model based on extended Nernst–Planck and film theory equations is reported. This model can be characterized by three transport parameters: the water permeability Lp, the salt transmittance Φ and the effective salt transfer coefficient Keff. The knowledge of the feed and permeate concentration and of the permeate volumetric flux enable us to calculate these transport parameters. The model is used to estimate cadmium salts rejection by a NANOMAX 50 membrane. Experimental and calculated results are shown to be in good agreement. The model is then successfully extended to experimental data reported in the literature. |
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Keywords: | Nanofiltration Model Ion transfer parameters Transport mechanism Salt rejection |
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