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LITERATURE CITED

  • 1
    Xie, H., Sun, B., & Zhu, X. (2009). Abatement of PFCs with microwave plasma in atmospheric pressure environment. Journal of Hazardous Materials, 168, 765769.
  • 2
    Yu, N.S., Azatyan, V.V., Bolodian, I.A., Navzenya, V.Y., Kopylov, S.N., Shebeko, D.Y., & Zamishevski, E.D. (2000). The influence of fluorinated hydrocarbons on the combustion of gaseous mixtures in a closed vessel. combust, Flame, 121(3), 542547.
  • 3
    Han, S.H., Park, H.W., Kim, T.H., & Park, D.W. (2011). Large scale treatment of PFCs using a thermal plasma scrubber, Clean Technology, 17(3), 250258.
  • 4
    Yu, S.J., & Chang, M.B. (2001). Oxidative conversion of PFC via plasma processing with dielectric barrier discharges, Plasma Chemistry and Plasma Processing, 21, 311327.
  • 5
    Kuznetsova, N.Y.K.I.V., Gutsol, A.F., Fridman, A.A., & Kennedy, L.A. (2002). Effect of “overshooting” in the transitional regimes of the low-current gliding arc discharge, Journal of Applied Physics, 92, 42314237.
  • 6
    Shmelev, V.M., & Margolin, A.D. (2003). Propagation of an electric discharge over the surface of water and semiconductor, High Temperature, 41, 735741.
  • 7
    Watanabe, T., & Taira, T. (2008). Water plasma generation under atmospheric pressure for HFC destruction, Thin Solid Films, 516, 43914396.
  • 8
    Su, Z.Z., Ito, K., Takashim, K., Katsura, S., Onda, K., & Mizuno, A. (2002). OH radical generation by atmospheric pressure pulsed discharge plasma and its quantitative analysis by monitoring CO oxidation, Journal of Physics D: Applied Physics, 35, 31923198.
  • 9
    Chang, M.B., & Lee, H.M. (2004). Abatement of perfluorocarbons with combined plasma catalysis in atmospheric-pressure environment, Catalysis Today, 89, 109115.
  • 10
    Zuo, Q., Chen, X., Li, W., & Chen, G. (2008). Combined electrocoagulation and electroflotation for removal of fluoride from drinking water, Journal of Hazardous Materials, 159, 452457.
  • 11
    Zhu, J., Zhao, H., & Ni, J. (2007). Fluoride distribution in electrocoagulation defluoridation process, Separation and Purification Technology, 56(2), 184191.
  • 12
    Islam, M., & Patel, R.K. (2007). Evaluation of removal efficiency of fluoride from aqueous solution using quick lime, Journal of Hazardous Materials, 143, 303310.
  • 13
    Kang, W.H., Kim, E.I., Park, J.Y. (2007). Fluoride removal capacity of cement paste, Desalination, 202, 3844.
  • 14
    Kagne, S., Jagtap, S., Thakare, D., Devotta, D., & Rayalu, S.S. (2009). Bleaching powder: A versatile adsorbent for the removal of fluoride from aqueous solution, Desalination, 243, 2231.
  • 15
    Suzuki, K., Ishihara, Y., Sakoda, K., Shirai, Y., Hirayama, M., Teramoto, A., Ohmi, T., & Watanabe, T. (2007). International Symposium on Semiconductor Manufacturing, ISSM 2007, Santa Clara, USA, October 15–17.