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2011 | 20 | 1 |

Tytuł artykułu

Selected aspects of metallurgical and foundry furnace dust utilization

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
One of the biggest problems in the metallurgical and foundry industries is the large quantity of dust generated during production processes. The most important is furnace dust created when the molten metal is prepared and subsequently sucked out by the dust removal system. At the Department of Foundry, experiments using the pneumatic injection method were carried out to utilize these kinds of materials and some results were successfully introduced into industrial applications. The results of dust injection into cupola and metallurgical EAFs (for slag foaming) were presented in this paper. The ideas behind the industrial set-ups, the process parameters, and the results obtained are described. The paper proves that pneumatic the injection technique could and should be continuously considered as an effective method for waste dust utilization.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

20

Numer

1

Opis fizyczny

p.101-105,fig.,ref.

Twórcy

autor
  • Department of Foundry, Silesian University of Technology, Towarowa 7, 44-100 Gliwice, Poland
autor

Bibliografia

  • 1. FIORE S., CHIARA ZANETTI M., RUFFINO B. Waste Characterization in Steel Casting and Recycling Opportunities in Europe. American Journal of Applied Science. 5, 5, 2008.
  • 2. VARGAS A. S., MASUERO A. B., VILELA A. C. F. Investigations on the use of electric-arc furnace dust (EAFD) in Pozzolan-modified Portland cement I (MP) pastes. Cement and Concrete Research. 36, 2006.
  • 3. FU P., ZHANG Q. Investigation on steelmaking dust recycling and iron oxide red preparing. Journal of University of Science and Technology Beijing. 15, 1, 2008.
  • 4. RUIZ O., CLEMENTE C., ALONSO M. ALGUACIL J. Recycling of an electric arc furnace flue dust to obtain high grade ZnO. Journal of Hazardous Materials 141, 2007.
  • 5. LIS T., PALUCHIEWICZ Z. The utilization of steel-making dusts in the glass-making industry. Hutnik – Wiadomości hutnicze, 5, 2007 [In Polish].
  • 6. SOFILIC T., RASTOVCAN-MIOC A., CERJAN-STEFANOVIC S., NOVOSEL-RADOVIC V., JENKO M. Characterization of steel mill electric-arc furnace dust. Journal of Hazardous Materials. B109, 2004.
  • 7. FIORE S., CHIARA ZANETTI M. Foundry Wastes Reuse and Recycling in Concrete Production. American Journal of Environmental Science. 3, 3, 2007.
  • 8. GĘGA J. Hydrometallurgical treatment of EAF dusts. Hutnik – Wiadomości hutnicze, 6, 2006 [In Polish].
  • 9. HOLTZER M., MALINOWSKA A. The reduction of harmfulness of heavy metals from electric arc furnace dust. Hutnik – Wiadomości hutnicze, 7-8, 2005 [In Polish].
  • 10. KAVOURAS P., KEHAGIAS T., TSILIKA I., KAIMAKAMIS G., CHRISSAFIS K., KOKKOU S., PAPADOPOULOS D., KARAKOSTAS Th. Glass-ceramic materials from electric arc furnace dust. Journal of Hazardous Materials. A139, 2007.
  • 11. KARBOWNICZEK M., MICHALISZYN A. Influence of some process parameters on the index output of electric are furnace. Hutnik – Wiadomości hutnicze, 4, 2005 [In Polish].
  • 12. SENK D., GUDENAU H. W., GEIMER S., GORBUNOVA E. Dust Injection in Iron and Steel Metallurgy. ISIJ International, 46, 2006.
  • 13. BLATZ J. Technologies of the recycling of metallurgical dusts and slurries. Hutnik – Wiadomości hutnicze, 5, 2005 [In Polish].
  • 14. SZLUMCZYK H., PIĄTKIEWICZ Z., JANERKA K., JEZIERSKI J. Tests of the pneumatic conveying system supplying loose materials to a cupola. Solidification of Metals and Alloys. 39, 1, 1999 [In Polish].
  • 15. KARBOWNICZEK M., WOLAŃSKA E., MRÓZ J. Influence of the foaming materials on the slag foaming parameters in electric are furnaces. Hutnik – Wiadomości hutnicze, 9, 2004 [In Polish].
  • 16. LEE G.-S., SONG Y. J. Recycling EAF dust by heat treatment with PVC. Minerals Engineering. 20, 2007.
  • 17. MRÓZ J., FRANCIK P. Possibilities of waste materials recycling in steel oxygen converters. Hutnik – Wiadomości hutnicze, 7, 2007 [In Polish].
  • 18. MRÓZ J, FRANCIK P., BUDZIK R. Some problems of waste materials recycling in the iron- and steelmaking industry. Hutnik – Wiadomości hutnicze, 7, 2006 [In Polish].
  • 19. MACHADO J. G. M. S., BREHM F. A., MORAES C. A. M., SANTOS C. A., VILELA A. C. F. Characterization Study of Electric Arc Furnace Dust Phases. Materials Research. 9, 1, 2006.
  • 20. JEZIERSKI J., JANERKA K., SZAJNAR J. Powder injection into liquid alloys as a tool for its quality improving, Archives of Foundry, 18, 6, 2005.
  • 21. RATKOWIC S., DÖPP R. Dust injection into cupola, Archives of Foundry, 13, 4, 2004 [In German].
  • 22. JEZIERSKI J., JANERKA K. Pneumatic powder injection technique as a tool for waste utilization. Int. J. Environment and Waste Management. 6, 2, 2008.
  • 23. HOLTZER M. Influence of the cast iron melting processes on environment using BAT. Archives of Foundry Engineering, 7, 4, 2007.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.dl-catalog-b010d1fc-2aab-4787-a524-31609d70670e
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