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Effect of carrier type on coupled transport kinetics of thiocyanate ions through liquid membranes
Authors:M. Kobya    E. Demirbas    N. Demircioglu    Y. Yildirim   Y. S. Yildiz
Affiliation:

a Department of Environmental Engineering, Gebze Institute of Technology, 41400, Gebze, Turkey

b Department of Chemistry, Gebze Institute of Technology, 41400, Gebze, Turkey

c Department of Environmental Engineering, Ataturk University, 25240, Erzurum, Turkey

d Department of Environmental Engineering, Karaelmas University, Zonguldak, Turkey

Abstract:Coupled transport of thiocyanate ions through a liquid membrane containing quaternary ammonium chloride salts in chloroform was examined. The influences of the carrier type in the membrane phase on the coupled transport of thiocyanate ions were investigated. The kinetics of the coupled transport were analyzed in the formalism of two consecutive irreversible first-order reactions and the kinetic parameters (k1d, k2m, k2a, Rmmax, tmax, Jdmax, Jamax) were also calculated. For the coupled transport of thiocyanate ions, quaternary ammonium chloride salts having different carbon atom numbers (Cn) used as carriers were found to increase thiocyanate ions transport efficiency with increasing carbon atom numbers. Tetradecyl trimethylammonium chloride (TDTMACl), hexadecyl trimethylammonium chloride (HDTMACl), and tetraoctyl ammonium chloride (TOACl) were found to be the most effective carrier types for transport of thiocyanate ions when Cn is greater than 16. The activation energies for maximum membrane entrance and exit fluxes were calculated as 32.45 kJ/mol and 34.75 kJ/mol, respectively. The values of the activation energy indicate that the process is controlled by species diffusion.
Keywords:Author Keywords: Liquid membrane   Thiocyanate ions   Carrier effect   Coupled transport kinetics
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