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Oczyszczanie chromowych ścieków garbarskich - procesy membranowe

Identyfikatory
Warianty tytułu
EN
Chromium tanning sewage treatment - membrane methods
Języki publikacji
PL
Abstrakty
EN
There are some traditional methods of the chromium elimination from tanning sewages. The chrome precipitation system is the most popular method currently but there is a problem with a large amount of the sludge which contains chromium. Some new methods are looking after to dissolved this problem. One of them are the membrane processes. This methods are more and more popular now into purification systems. There are the pilot membrane systems in the world. The results indicated that this method could be very attractive to recirculation chrome from tanning effluents.
Rocznik
Tom
Strony
41--44
Opis fizyczny
Bibliogr. 28 poz., tab., rys.
Twórcy
autor
  • Wydział Materiałoznawstwa i Technologii Obuwia Politechniki Radomskiej
Bibliografia
  • 1. Watson B.M., Hornburg C.D.: Low-energy membrane nanofiltration for removal of color, organics and hardness from drinking water supplies, Desalination, 72 (1989) 11-17.
  • 2. Bodzek M., Konieczny K.: Comparison of various membrane types and module configuration in the treatment of natural water by means of low-pressure membrane methods, Sep. Purif. Techn., 14 (1998) 69-78.
  • 3. Zeman L.J., Zydney A.L.: Microfiltration and Ultrafiltration. Principles and applications, Marcel Dekker, INC., New York, 1996.
  • 4. Noworyta A., Trusek-Hołownia A., Kozioł T.: Odwrócona osmoza jako metoda oczyszczania kondensatów zawierających azotan amonu, Monografie Komitetu Inżynierii Środowiska PAN, 22 (2004) 145-150.
  • 5. Barron-Zambrano J., Laborie S., Viers Ph., Rakib M., Durand G.: Mercury removal from aqueous solution by complexation-ultrafiltration, Desalination, 144 (2002) 201-206.
  • 6. Boussahel R., Bouland S., Moussaoui K.M., Montiel A.: Removal of pesticide residues in water using the nanofiltration process, Desalination, 132 (2000) 205-209.
  • 7. Cassano A., Drioli E., Molinari R.: Recovery and reuse of chemicals in unharing, degreasing and chromium tanning processes by membranes, Dasalination 113 (1997) 251-261.
  • 8. Shaalan H., F., Sorour M., H., Tewfik S., R.: Simulation and optimization of a membrane system for chromium recovery from tanning wastes, Desalination 141 (2001) 315-324.
  • 9. Cassano A., Drioli E., Molinari R., Bertolutti C: Quality improvement of recycled chromium in the tanning operation by membrane processes, Desalination, 108 (1996) 193-203.
  • 10. Hafez A. I., El-Manharawy M. S., Khedr M. A.: RO membrane removal of unreacted chromium from spent tanning effluent. A pilot-scale study, Part 2, Desalination 144 (2002) 237-242.
  • 11. Fabiani C, Ruscio F., Spadoni M., Pizzichini M.: Chromium(III) salts recovery process from tannery wastewaters, Desalination, 108 (1996) 183-191.
  • 12. Renault M., Aulas F., Rumeau M.: Recovery of chromium from wastewater by ultrafiltration, Chem. Engin. J., 23 (1982) 137-143.
  • 13. Bodzek M., Konieczny K.: Comparison of various membrane types and module configuration in the treatment of natural water by means of low-pressure membrane methods, Sep. Purif. Techn., 14 (1998) 69-78.
  • 14. Coelhoso I.M., Moura T.F., Crespo J.P.S.G., Carrondo M.J.T.: Transport mechanisms in liquid membranes with ion exchange carriers, J. Membr. Sci., 108 (1995) 231-244.
  • 15. Boyadzhiev L., Kyuchoukov G.: Futher development of carrier-mediated extraction, J. Membr. Sci., 6 (1980) 107-112.
  • 16. Crespo J.G., Boddeker K.W.: Membrane processes in separation and purification, Kluwer Academic Publisher, Dordrecht, 1994.
  • 17. Yang X.J., Fane A.G.: Performance and stability of supported liquid membrane using LIX984N for copper transport, J. Membr. Sci,, 156 (1999) 251-263.
  • 18. Kulkarni P.S., Mulchopadhyay S., Bellary M.P., Ghosh S.K.: Studies on membrane stability and recovery of uranium(VI) from aqueous solutions using a liquid emulsion membrane process, Hydrometallurgy, 64 (2002) 49-58.
  • 19. Bhowal A., Datta S.: Studies on transport mechanism of Cr(VI) extraction from an acidic solution using liquid surfactant membranes, J. Membr. Sci. 188 (2001) 1-8.
  • 20. Sang C.L., Byoung S.A., Won K.L.: Mathematical modeling of silver extraction by emulsion liquid membrane process, J. Membr. Sci., 114 (1996) 171-185.
  • 21. Chaudry Ashraf M., Ahmad S., Malik M., T.: Supported liquid membrane technique applicability for removal of chromium from tannery wastes, Waste Management, 17 (4) (1997) 211-218.
  • 22. Molinari R., Drioli E., Pantano G.: Stability and effect of diluents in supported liquid membranes for Cr(III), Cr(VI) and Cd(II) recovery, Sep. Sci. Technol, 24 (12&13) (1989) 1015-1032.
  • 23. Gawroński R., Religa P.: Przenoszenie jonów chromu(III) w układach z membraną ciekłą, Monografie Komitetu Inżynierii Środowiska PAN, 22 (2004) 295-304.
  • 24. Pandey B., D.: Cote G., Bauer D.: Extraction of chromium (III) from spent tanning baths, Hydrometallurgy 40 (1996) 343-357.
  • 25. Lanagan M. D., Ibana D., C: The solvent extraction and stripping of chromium with Cyanex 272, Miner. Engin., 16 (2003) 237-245.
  • 26. Kocaoba S., Akcin G.: Removal and recovery of chromium and chromium speciationwith MINTEQA2, Talanta, 57 (2002) 23-30.
  • 27. Kalachev A.A., Kardivarenko L.M., Plate N.A., Bagreev V.V.: Facilitated diffusion in immobilized liquid membranes: Experimental verification of the „jumping" mechanism and percolation threshold in membrane transport, J. Membr. Sci., 75 (1992) 1-5.
  • 28. Religa P., Gawroński R., Gierycz P., Kacperski W.: Modelowanie transportu chromu(III) przez grubowarstwową membranę ciekłą, Monografie Komitetu Inżynierii Środowiska PAN, 2006 (materiały przyjęte do druku).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0041-0002
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