Water purification by electrical discharges

被引:570
作者
Malik, MA
Ghaffar, A
Malik, SA
机构
[1] PINSTECH, Div Appl Chem, Islamabad, Pakistan
[2] Quaid I Azam Univ, Dept Biol Sci, Islamabad, Pakistan
关键词
D O I
10.1088/0963-0252/10/1/311
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
There is a continuing need for the development of effective, cheap and environmentally friendly processes for the disinfection and degradation of organic pollutants from water. Ozonation processes are now replacing conventional chlorination processes because ozone is a stronger oxidizing agent and a more effective disinfectant without any side effects. However, the fact that the cost of ozonation processes is higher than chlorination processes is their main disadvantage. In this paper recent developments targeted to make ozonation processes cheaper by improving the efficiency of ozone generation, for example, by incorporation of catalytic packing in the ozone generator, better dispersion of ozone in water and faster conversion of dissolved ozone to free radicals are described. The synthesis of ozone in electrical discharges is discussed. Furthermore, the generation and plasma chemical reactions of several chemically active species, such as H2O2, O-., OH., HO2., O-3*, N-2*, e(-), O-2(-), O-, O-2(+), etc, which are produced in the electrical discharges are described. Most of these species are stronger oxidizers than ozone. Therefore, water treatment by direct electrical discharges may provide a means to utilize these species in addition to ozone. Much research and development activity has been devoted to achieve these targets in the recent past. An overview of these techniques and important developments that have taken place in this area are discussed. In particular, pulsed corona discharge, dielectric barrier discharge and contact glow discharge electrolysis techniques are being studied for the purpose of cleaning water. The units based on electrical discharges in water or close to the water level are being tested at industrial-scale water treatment plants.
引用
收藏
页码:82 / 91
页数:10
相关论文
共 89 条
  • [1] Pulsed corona for removing volatile impurities from drinking water
    AlArainy, AA
    Jayaram, S
    Cross, JD
    [J]. ICDL 1996 - 12TH INTERNATIONAL CONFERENCE ON CONDUCTION AND BREAKDOWN IN DIELECTRIC LIQUIDS, 1996, : 427 - 431
  • [2] Free radical reactions in aqueous solutions: Examples from advanced oxidation processes for wastewater and from the chemistry in airborne water droplets
    Baird, NC
    [J]. JOURNAL OF CHEMICAL EDUCATION, 1997, 74 (07) : 817 - 819
  • [3] CHEMOX(TM): Advanced waste water treatment with the impinging zone reactor
    Barrett, PA
    Baumgartl, A
    Hannay, N
    Vetter, M
    Xiong, F
    [J]. WATER SCIENCE AND TECHNOLOGY, 1997, 35 (04) : 347 - 352
  • [4] Nitroaromatic hydrocarbon ozonation in water. 2. Combined ozonation with hydrogen peroxide or UV radiation
    Beltran, FJ
    Encinar, JM
    Alonso, MA
    [J]. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1998, 37 (01) : 32 - 40
  • [5] Propagation and structure of streamers in liquid dielectrics
    Beroual, A
    Zahn, M
    Badent, A
    Kist, K
    Schwabe, AJ
    Yamashita, H
    Yamazawa, K
    Danikas, M
    Chadband, WG
    Torshin, Y
    [J]. IEEE ELECTRICAL INSULATION MAGAZINE, 1998, 14 (02) : 6 - 17
  • [6] Blokhin VI, 1999, HIGH TEMP+, V37, P963
  • [7] CHALMERS ID, 1996, IEE C PULS POW 96 LO
  • [8] CHAN MHW, 1991, PHASE TRANSITION S, V2, P1
  • [9] Chang JS, 1996, IEICE T COMMUN, VE79B, P447
  • [10] CHANG JS, 1993, NONTHERMAL PLASMA TE, P1