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Experimental results on the separation of sulfuric acid from its mixture with sodium- and magnesium sulfate, respectively, by the electrodialytic method have been presented. The Selemion AVV membrane as anion-exchange membrane was used. It was found that the leakage of Na+ from the cathode to the anode side of the AAV was higher than that of Mg2+. The leakage of Na+ decreased with the acid concentration whereas that of Mg2+ increased. Surprisingly enough, the permeability of Na+ increased with the electric current density, indicating a substantial contribution of electroosmotic convection to the Na+ flow. The current efficiency of the anions transport (HSO4 -, SO4 2-) through the AAV hardly exceeded 50%. It was independent of the kind of salt present on the cathode side of the AAV.
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101--108
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Bibliogr. 10 poz., rys., tab.
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autor
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- Faculty of Chemistry, Nicolaus Copernicus University, ul. Gagarina 7, 87-100 Toruń, Poland, skoter@chem.uni.torun.pl
Bibliografia
- [1] Kołtuniewicz A.B., Drioli E., 2008. Membranes in Clean Technologies, Theory and Practice, Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
- [2] Huang Ch., Xu T., Zhang Y., Xue Y., Chen G., 2007. Application of electrodialysis to the production of organic acids: State-of-the-art and recent developments. J. Membr. Sci., 288, 1-12.
- [3] Pierard J., Paquay E., Degrez M., 2002. Recycling by electrodialysis: from lab to industrial applications. Desalination, 149, 393-398.
- [4] Strathmann H., 2010. Electrodialysis, a mature technology with a multitude of new applications. Desalination, 264, 268-288.
- [5] Palatý Z., Bendová H., 2011. Continuous dialysis of sulphuric acid and magnesium sulphate. Sep. Purif. Technol., 76, 400-406.
- [6] Palatý Z., Żáková A., 2004. Separation of H2SO4 + ZnS04 mixture by diffusion dialysis. Desalination, 169, 277-285.
- [7] Palatý Z., Žáková A., 2004. Separation of H2SO4 + CuSO4 mixture by diffusion dialysis. J. Hazard. Mat., 114, 69-74.
- [8] Lorrain Y., Pourcelly G., Gavach C., 1996. Influence of cations on the proton leakage through anion-exchange membranes. J. Membr. Sci., 110, 181-190.
- [9] Koter S., Kultys M., Gilewicz-Łukasik B., 2011. Modeling the electric transport of HCl and H3PO4 mixture through anion-exchange membranes. Membrane Water Treatment, 2, 187-205.
- [10] Koter S., Kultys M., 2010. Modeling the electric transport of sulfuric and phosphoric acids through anion-exchange membranes. Sep. Purif. Technol., 73, 219-229.
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Bibliografia
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bwmeta1.element.baztech-article-BATA-0015-0049