Performances of electrodialysis process in desalination of brackish waters at various salinities and voltage

  • Authors

    • Elazhar Fatima chemistry
    • Maryem Elazhar chemistry
    • Mahmoud Hafsi
    • Azzeddine Elmidaoui
    2014-02-28
    https://doi.org/10.14419/ijac.v2i2.1741
  • In the south Mediterranean countries and especially the North Africa, the water demands, since many decades, have increased while the conventional water availability has decreased dramatically. These trends continue. The obligation to use other non-conventional water resources such as desalinating water or waste water reuse becomes a necessity.

    Electrodialysis is a membrane process that competes with reverse osmosis for desalination and the removal of specific inorganic contaminants

    The experiments for desalination were carried out of various synthetic brackish waters containing 2, 4, 6, 8 and 10 g/l NaCl in order to determinate the operating conditions of electrodialysis process. The pilot used supplied by the Tokuyama Corp. The influence on the desalination performances of many running parameters such as voltage and salinities was investigated.

    These studies demonstrated that the electrodialysis is an effective method of being used to desalinate brackish water was well as water with higher salt concentrations up to about 10 g/L NaCl.

     

    Keywords: Electrodialysis, Performances, Membrane, Voltage, Salinities, Intensity.

  • References

    1. Maurel A., Revue Generale de l’Electricité 86 (1977) 6.
    2. Macedonio F., Drioli E., Compr. Membr. Sci. Eng. 4 (2010) 241–257. http://dx.doi.org/10.1016/B978-0-08-093250-7.00056-6
    3. Chon K., Lee Y., Traber J., von Gunten U., Water Research Volume 47, Issue 14, (2013) 5381–5391. DOI:10.1016/j.watres.2013.06.019
    4. Praneeth K., Manjunath D., Bhargava S.K, Tardioc J. S. S., Desalination 333 (2014) 82–91. http://dx.doi.org/10.1016/j.desal.2013.11.020
    5. Anh T.K., Tran Yang Zhang Nora Jullok Boudewijn Meesschaert Luc Pinoy Bart Van der Bruggen. Chemical Engineering Science, Volume 79, (2012), Pages 228–238. DOI:10.1016/j.ces.2012.06.001.
    6. Jiang C., Wang Y., Zhang Z., Xu T., Journal of Membrane Science Volume 450 (2014) 323–330. http://dx.doi.org/10.1016/j.memsci.2013.09.020
    7. Ortiz J.M., Sotoca J.A., Exposito E., Gallud F., Garcia-Garcıa V, Montiel V., Aldaz A., Journal of Membrane Science 252 (2005) 65–75.DOI:10.1016/j.memsci.2004.11.021.
    8. Walsh F.C., A First Course in Electrochemical Engineering, the Electrochemical Consultancy, Hants, 1993.
    9. Pletcher D., Walsh F.C., Industrial Electrochemistry, Chapman and Hall, London, 1990.
    10. Elazhar F., Elamrani M., Taky M., Hafsi M., and Elmidaoui A., International journal of environemental sciences Volume 3(6), (2013) 2139- 2150. DOI: 10.6088/ijes.2013030600030
    11. Elazhar F., Tahaikt M., Zouahri A., Taky M., Hafsi M., and Elmidaoui A., World Applied Sciences Journal 22 (6), (2013)844-850. DOI: 10.5829/idosi.wasj.2013.22.06.268
    12. Lens P., Molenberghs B., Brauns E., Van Hoof V., Van Hoof E., Thomas G., Demey D., De Wever H., Dotremont C. Desalination 170 (2004) 123-136. http://dx.doi.org/10.1016/j.desal.2004.03.017
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  • How to Cite

    Fatima, E., Elazhar, M., Hafsi, M., & Elmidaoui, A. (2014). Performances of electrodialysis process in desalination of brackish waters at various salinities and voltage. International Journal of Advanced Chemistry, 2(2), 49-52. https://doi.org/10.14419/ijac.v2i2.1741