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Metody wprowadzania ozonu do fazy ciekłej

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Warianty tytułu
EN
Methods of ozone introduction into the liquid phase
Języki publikacji
PL
Abstrakty
PL
W artykule przedstawiono teoretyczne podstawy wprowadzania (absorpcji) ozonu do fazy ciekłej oraz metody praktycznej realizacji tego procesu, zwracając uwagę na te parametry układu, które w największym stopniu wpływają na szybkość procesu. Umożliwia to poszukiwanie nowszych rozwiązań procesowo-aparaturowych, dzięki którym można zintensyfikować proces absorpcji ozonu. Dokonano porównania efektywności działania różnych kontaktorów gaz-ciecz mierzonej w tym przypadku wielkością głównych parametrów procesowych, jakimi są objętościowy współczynnik wnikania masy (kLa) oraz powierzchnia właściwa (a).
EN
In the paper theoretical background of the principles enabling ozone introduction (absorption) into the liquid phase and practical methods of accomplishment of that process have been presented. Attention has been given to the system parameters that to the highest degree affect the rate of absorption. It makes possible looking for the novel process and equipment design assisting intensification of ozone absorption. Some comparison between the performance of different gas-liquid contactors has been presented expressed by means of the major process parameters such as the volumetric mass transfer coefficient (kLa) and the specific interfacial area (a).
Czasopismo
Rocznik
Tom
Strony
46--51
Opis fizyczny
Bibliogr. 26 poz., rys., tab., wzory
Twórcy
autor
  • Wydział Inżynierii Chemicznej i Procesowej Politechniki Warszawskiej
Bibliografia
  • [1] Biń, A.K., Roustan, M. (2000). Mass transfer in ozone reactors. Proceedings of the International Specialized Symposium on IOA 2000, Fundamental and Engineering Concepts for Ozone Reactor Design, Toulouse, March 1-3, 2000, 99-131.
  • [2] Biń, A.K., Duczmal, B., Machniewski, P, (2001). Hydrodynamics and ozone mass transfer in a tall bubble column. Chemical Engineering Science, 56, 6233-6240.
  • [3] Biń, A.K. (2004). Ozone dissolution in aqueous systems. Treatment of the experimental data. Experimental Thermal and Fluid Science, 28, 395-405.
  • [4] Biń, A.K. (2005). Wykorzystanie ozonu w uzdatnianiu wody. w: Zastosowanie ozonu, wyd. J. Perkowski i R. Zarzycki, Polska Akademia Nauk, Łódź, 2005, rodz. 6, 207-278; ISBN 83-86492-31-7.
  • [5] Biń, A.K., Roustan, M. (2005). Basic chemical engineering concepts for the design of ozone gas-liquid reactors. Proc. 17th World Ozone Congress, 22-24 September 2005, Strasbourg.
  • [6] Biń, A.K. (2008): Ozone transfer from gas into water and contact equipment design, Encyclopedia of Life Support Systems (EOLSS) - UNESCO 6.192, Chapter 5.
  • [7] Biń, A.K. (1993): Gas entrainment by plunging liquid jets. Chemical Engineering Science, 48, 3585-3630.
  • [8] Langlais, Ch. (1998). Etude des mamgeurs statiques en tant que racteur chimique utilisant les proc. D’oxidation O3 et O3/H2O2. Ph.D. Dissertation, University of Poitiers.
  • [9] Heyouni, A., Roustan, M., Do-Quang, Z. (2002). Hydrodynamics and mass transfer In gas-liquid flow through static mixers. Chemical Engineering Science, 57, 3325-3333.
  • [10] Jakubowski, C.A., Atkinson, B.W., Dennis, P., Evans, G.M. (2004). Ozone mass transfer In the mixing zone of a confined plunging liquid jet contactor. Ozone: Science and Engineering, 25, 1-12.
  • [11] Pines, D.S., Min, K.-N., Ergas, S.J., Reckow, D.A. (2005). Investigation of an ozone membrane contactor system. Ozone: Science and Engineering, 27, 209-217.
  • [12] Mazzei, A., Meyer, R. M., Bollyky, L. J. (1995). Mass transfer of high concentration ozone with high efficiency injectors and degassing separators. Proceedings of 1995 PAN Group Annual Conference of IOA, Cambridge, MA, November 13, 1995.
  • [13] Overbeck, P.K., Mazzei, A.L. (1997). High efficiency in-line pressurized ozone contacting with the GDTTM process. Proceedings of the European-African Group of IOA, Berlin, April 22, 1997.
  • [14] Overbeck, P.K., Mazzei, A.L., Meyer, M. (2000). Computer simulation of side stream ozone transfer based on extensive pilot plant studies using Ventouri injectors and nozzles. Proceedings of the International Specialized Symposium on IOA 2000, Fundamental and Engineering Concepts for Ozone Reaktor Design, Toulouse, March 1-3, 2000, 151-154.
  • [15] Jackson, J.R., Overbeck, P.K., Overby, J.M. (2001). Retrofit of ozone installations with side stream injection and degassing.http://www.mazzei.net/publications.
  • [16] Jackson, J.R., Overbeck, P.K., Overby, J.M. (1999): Dissolved oxygen control by pressurized side stream ozone contacting and degassing. International Ozone Association World Congress 1999 Annual Conference Dearborn, Michigan, USA August 24, 1999.
  • [17] Bale, A., Gamal El-Din, M., Smith, D.W., Mazzei ,A., Overbeck, P. (2005). Ozone mass transfer analysis of two new ozone reactor designs. Proc. 17th World Congress, International Ozone Association, Strasbourg,France, August 22-25, 2005.
  • [18] Schulz, Ch. (2005). Designing a J-tube ozone dissolution and contacting system for improved disinfection performance. Proc. 17th World Congress, International Ozone Association, Strasbourg, France, August 22-25, 2005.
  • [19] Farines, V., Baig, S., Albet, J., Molinier, J., Legay, C. (2003). Ozone transfer from gas to water in a co-current upflow packed bed reaktor containing silica gel. Chemical Engineering Journal, 91, 67-73.
  • [20] Garcia Maldonado, J.G., Hebrard, G., Roustan, M., Bastoul, D., Baig, S. (2005). Hydrodynamice and mass transfer in a three phase fixed bed reactor with co-current gas-liquid upflow: the effect of different packing. Proc. 17th World Congress, International Ozone Association, Strasbourg, France, August 22-25, 2005.
  • [21] Chen, Y.H., Chang, C.Y., Su, W.L., Chen, C.C., Chiu, C.Y., Yu, Y.H., Chiang, P.C., Chiang, S.I.M. (2004). Modelling ozone contacting process in a rotating packed bed. Industrial and Engineering Chemical Research, 43, 228-236.
  • [22] Gao, M.-T., Hirata, M., Takanashi, H., Hano, T. (2005). Ozone mass transfer in a new gasliquid contactor-Karman contactor. Separation and Purification Technology, 42, 145-149.
  • [23] Janknecht, P., Wilderer, P.A., Picard, C., Larbot, A., Sarrazin, J. (2000). Investigation on ozone contacting by ceramic membranes. Ozone: Science and Engineering, 22, 379-392.
  • [24] Phattaranaik, J., Leiknes, T., Pronk, W. (2005). Mass transfer studies in flat-sheet membrane contactor with ozonation. Journal of Membrane Science, 247, 153-167.
  • [25] Leiknes, T., Phattaranawik, J., Boller, M., von Gunten, U., Pronk, W. (2005). Ozone transfer and design concept for NOM decolourization in tubular membrane contactor. Chemical Engineering Journal, 111, 53-61.
  • [26] Heng, S., Yeung, K.L., Djafer, M., Schrotter, J.-Ch. (2007). A novel membrane reactor for ozone water treatment. Journal of Membrane Science, 289, 67-75.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSW3-0071-0008
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