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电解海水制氯装置及系统的调试技术 被引量:3

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摘要 电解海水制氯装置是通过整流变压器和整流器,将AC6KV交流电变压整流为直流电,施加到海水电解槽的阴、阳极上。使海水发生电解产生活性有效氯,投加到机组冷却海水中,以解决海生物及菌藻类在冷却水管道和凝汽器铜管上附着繁殖问题,提高流通面积和凝汽器冷却效率,改善发电运行。
作者 赵东普 姜丽
出处 《科技创新导报》 2012年第6期98-98,共1页 Science and Technology Innovation Herald
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参考文献1

  • 1斯里兰卡普塔拉姆1×300MW燃煤电站电解海水制氯装置使用维护说明书,2009(10).

同被引文献19

  • 1聂鑫,龙潇.海水淡化浓海水用于电解制氯试验[J].中国电力,2012,45(6):59-63. 被引量:5
  • 2Alexander Kraft. Electrochemical Water Disinfection: A Short Review [J]. Platinum Metals Review, 2008, 52(3): 177-185.
  • 3C.-C. Hu, C. -H. Lee, T. -C. Wen. Oxygen evolution and hypochloritc production on Ru-Pt binary oxides J. Journal of Applied Electrochemistry, 1996, 26(1): 72-82.
  • 4M. Rudolf, I. Rousar, J. Krysa. Cathodic reduction of jypochlo- rite during reduction of dilute sodium chloride solution [J]. Jour- nal of Applied Electrochemistry, 1995, 25(2) : 155- 165.
  • 5H. -J Heidrich, L. Muller, B. I. Podlovchenko. The influence of electrode porosity and temperature on electrochemical gas evolution at platinum and rhodium [-J]. Journal of Applied Electrochemistry, 1990, 20(4): 686-691.
  • 6A. Kraft, M. Stadclmann, M. Blaschke, et al. Electrochemical water disinfection Part I : Hypochlorite production from very dilute chloride solutions [ J ]. Journal of Applied Electrochemistry, 1999, 29(7) 861-868.
  • 7A. Kraft, M. Blaschke, D. Kreysig, et al. Electrochemical water disinfection Part ]I ; Hypochlorite production from potable water, chlorine consumption and the problem of calcareous deposits [J]. Journal of Applied Electrochemistry, 1999, 29(8) ; 895-902.
  • 8M. E. H. Bergmann, A. S. Koparal. Studies on electrochemical disinfectant production using anodes containing RuO2 [J]. Journal of Applied Electrochemistry, 2005, 35(12); 1321-1329.
  • 9A. Kraft, M. Blaschke, D. Kreysig. Electrochemical water disinfection Part [1I '. Hypochlorite production from potable water with ultrasound assisted cathode cleaning J. Journal of Applied Electrochemistry, 2002, 32(6): 5974601.
  • 10Joonseon Jeong, Choonsoo Kim, Jeyong Yoon. The effect of electrode material on the generation of oxidants and microbial inactivation in the electrochemical disinfection processes ]-J. Water Research, 2009, 43(4): 895901.

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