• DocumentCode
    227853
  • Title

    Electrophysical methods of bacteriological disinfection of water medium

  • Author

    Gurbanov, Elchin

  • Author_Institution
    Azersu OJSC, Baku, Azerbaijan
  • fYear
    2014
  • fDate
    25-29 May 2014
  • Firstpage
    1
  • Lastpage
    1
  • Abstract
    Summary form only given. For effective use of reserved energy of a source in various technological applications, researches of pulse discharges in water, represent a great interest [1-3]. Impact of the high electric fields on water medium causes a some physical processes, directed on cleaning of drinking water and wastewater from dangerous bacteria and viruses. Using of asymmetrical electrode system in water and pulsed microsecond discharges, it is possible to realize as thermal and electric physical processes, such as, water boiling up, electrolysis, formation of gas inclusions by various concentrations nearly anode and cathode, ionization processes inside of them, formation of oxygen ions and ozone, visible and UV-radiations, ionization waves, in a complex disinfected the water medium. It should be noted, that concentration of hydrogen gas inclusions nearly cathode exceeds the concentration of oxygen ones near the anode. Therefore, at small tension amplitudes and at negative polarity the discharge delay time is less, than at positive one. By increase of tension amplitude the delay time is decreased, but distribution speed of plasma channels, in comparison with negative polarity, is increased. At negative polarity of tension the distribution speed of plasma channels inside of gas inclusions is lower than the sound speed in water, but at positive tension polarity and on big tension amplitudes, it can be reached - 5*106 cm/s, that is much more, than sound speed in water. Therefore, it is more preferable to apply the electrode system with positive tension polarity for realization of electro physical disinfection of water medium. This method can replace the using of ecologically dangerous chemical reagents (chlorine) for water disinfection. After such treatment, the sharp decrease of main bacteriological indicators: total microbe number, concentration of the koliformn, thermotolerant bacteria and coliphages is observed: Their values are much lower the norm - n international standards. At impact of high voltage pulses on a bacteriological cell, there are the explosive processes in its layers, transparent for some metal ions in water. As a result, the strong electric fields get into the cell´s cytoplasm, and further in nuclear, finally caused a stop of their further growth and development. Considering an efficiency and ecological purity of this purification method, we can apply it, entirely or partially, for disinfection of drinking water and wastewater instead of chlorination process.
  • Keywords
    biotechnology; microorganisms; purification; water treatment; asymmetrical electrode system; bacteriological disinfection; bacteriological indicators; chlorination process; drinking water cleaning; ecological purity; electric physical process; electrophysical methods; hydrogen gas inclusion; pulse discharge; purification method; reserved energy use; tension amplitude; tension polarity; thermal process; wastewater cleaning; water disinfection; water medium; Anodes; Cathodes; Electric fields; Ionization; Microorganisms; Wastewater;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Plasma Sciences (ICOPS) held with 2014 IEEE International Conference on High-Power Particle Beams (BEAMS), 2014 IEEE 41st International Conference on
  • Conference_Location
    Washington, DC
  • Print_ISBN
    978-1-4799-2711-1
  • Type

    conf

  • DOI
    10.1109/PLASMA.2014.7012572
  • Filename
    7012572