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Assessment of the possibility of utilising waste materials from the aluminium production in the copper alloys refining processes

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The analysis of possibilities of utilising waste materials as equivalents of substances stimulating in copper alloys refining processes was presented. The results of thermogravimetric investigations determining the refining ability of the slag with the selected waste materials from the aluminium production were discussed. The possibility of optimisation of the refining slag composition on the basis of the Slag-Prop software was indicated.
Słowa kluczowe
Rocznik
Strony
15--20
Opis fizyczny
Bibliogr. 12 poz., rys., tab., wykr.
Twórcy
  • AGH University of Science and Technology, Al. Mickiewicza 30, 30-059 Kraków, Poland; Jan Amos Komenski State School of Higher Vocational Education, Al. Mickiewicza 5, 64-100 Leszno, Poland
autor
  • State School of Higher Vocational Education, ul. Piotra Skargi 5, 67-200 Głogów, Poland
autor
  • State School of Higher Vocational Education, ul. Piotra Skargi 5, 67-200 Głogów, Poland
autor
  • University of Zielona Góra , ul. Z. Szafrana 4, 65-516 Zielona Góra, Poland
Bibliografia
  • [1] Bydałek, A. (1971). The calcium carbide copper rafinaction. Chem. Process. 10, 27-31. ISSN 0208-6425.
  • [2] Biernat, S., Bydałek. A.W. (2009). Analysis of the possibility of estimation slags property with use the database. Archives of Foundry Engineering. 9(2), 49-52.
  • [3] Biernat, S., Bydałek, A.W. (2009). The programme of estimation slags propriety. Archives of Foundry Engineering. 9(3), 9-12.
  • [4] Biernat, S. (2012). Influence of the physico-chemical properties of the coatings on their extraction refining ability. Doctoral Thesis. Szczecin: ZUT.
  • [5] Bydałek, A.W. (1993). An attempt to analyze the reducer refining capacity in the melting brass condition. Archiwum Technologii Maszyn. 12, 1-6.
  • [6] Bydałek, A.W. (2001). Assessing the refining abilities of slags by modelling a real process of metal. Journal of Thermal Analysis and Calorymetry. 65, 591-597.
  • [7] Holtzer, M., Bagińska, E., Baliński, A., Borla, K., Bydałek, A.W., Dańko, J., Kowalski, K., Latała-Holtzer, M., Młyński, M., Podrzucki, C., Rożek, J., Żmudzińska, M. (2005). Guide to the best available techniques (BAT). Guidelines for the foundry industry. Guides Industry - Best AvailableTechniques (BAT). Warsaw, Ministry of the Environment, 228-243.
  • [8] Antrekowitsch, J. & Offenthaler, D. (2010). Die Halogenproblematik in der Aufarbeitung zinkhältiger Reststoffe BHM. Printed in Austria Springer-Verlag. 155(1), 31-39. DOI 10.1007/ s00501-009-0527-1.
  • [9] Amini, S.H., Brungs, M.P., Jahanshahi, S. & Ostrovski, O. (2006). Effects of Additives and Temperature on Dissolution Rate and Diffusivity of Lime in Al2O3-CaO-SiO2 Based Slags. Metall. Mater. Trans. B. 37(B), 775-781. ISSN 1073-5615.
  • [10] Lambotte, G. & Chartrand, P. (2011). Thermodynamic optimization of the (Na2O + SiO2 + NaF + SiF4) reciprocal system using the Modified Quasichemical Model in the Quadruplet Approximation. J. Chem. Thermodynamics. 43, 1678-1699. ISSN 0021-9614.
  • [11] Dolejs, D. & Baker, D.R. (2004). Thermodynamic analysis of the system Na2O-K2O-CaO-Al2O3-SiO2-H2O-F2O-1: Stability of fluorine-bearing minerals in felsic igneous suites. Contrib Mineral Petrol. 146, 762-778. DOI 10.1007/s00410-003-0533-3.
  • [12] Guseva, E.Yu.& Gulyukin, M.N. (2002). Effect of Fluoride Additives on Glass Formation in the SiO2–CaO–Al2O3 System. Inorganic Materials. 38, 962-965. ISSN 1608-3172.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-f2b7e00c-c007-4bbd-b6fb-4d4c895d48ab
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