Diffusion And Osmosis In Potassium Nitrate Synthesis By Electrodialysis Metathesis
Published Online: Aug 27, 2018
Page range: 115 - 121
Received: Apr 01, 2016
Accepted: Jul 09, 2016
DOI: https://doi.org/10.21307/acee-2016-058
Keywords
© 2016 Hanna JAROSZEK et al., published by Sciendo
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
The experimental results of the chosen salts permeation with selected heterogeneous and homogenous membranes were analysed as a part of modelling of mass transport in electrodialysis metathesis process (ED-M) for synthesis of KNO3. Heterogeneous membranes swelled more in aqueous solutions and they had higher water uptake than homogeneous membranes. Heterogeneous membranes were also more permeable for both the solute and the solvent, which was attributed to higher solubility of salts in heterogeneous membrane’s material. Diffusion coefficients in ion-exchange membranes tested in this study were found to be dependent on concentration of the upstream solution, with an exception of Ca2+ in anion-exchange membranes and NO3- in cation-exchange membranes. The role of osmosis in water transport in ED-M process was found negligible.