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Material balance of the technological process in the new foundry of new ferronikel in DRENAS 2017

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Języki publikacji
EN
Abstrakty
EN
Experimental and industrial research of the technological process during the year 2017, including planning, is presented in this paper. That research was conducted in the new Foundry of new Ferronickel in Drenas, which is in the village of Cikatove, Drenas, the Republic of Kosovo. According to initial calculations, an amount of ore which would enter the process was determined, however the anticipated amount was different from the one used during the process. The same applies to fuel. Difference between the planned and the actual amount of ore used during the year 2017 resulted from the percentage of Ni in the amount of ore used in the foundry, demand for an Fe-Ni ferroalloy etc. The technological process in the foundry serves the purpose of processing ore of ironnickel with a high percentage of Ni in its composition. The material balance of the technological process in the new Foundry of new Ferronickel in Drenas, presented in this paper, is based on experimental and industrial data of the technological process acquired in the foundry. The material balance includes the technological process starting from calculation of the amount of ore and fuel, both making up the load for the rotary kiln. Additional contributors to the material balance are calculation of the amount of: fuel, which impacts the increase of temperature in rotary kilns, charge for the electric furnaces, metal and slags from the electric furnaces, metal and slags from the refining process (convertors) and mathematical calculation of the final product which is the ferroalloy of Fe-Ni. While preparing the material balance we have noticed greater acquisition of Ni than planned. The greater amount of Ni was produced by a smaller amount of ore than originally planned.
Słowa kluczowe
EN
foundry   ore   fuel   calcine   silicate   oxide  
PL
Twórcy
  • University of Mitrovica “Isa Boletini”, Faculty of Geosciences: Department of Materials and Metallurgy, Industrial Park n.n. 40000 Mitrovica Republic of Kosovo
  • New Foundry of the New Ferronickel in Drenas, Republic of Kosovo
Bibliografia
  • [1] Z. Bajraktari Gashi, “Theoretical and experimental research in order to reach optimum technical, technologic and productive parameters during qualitative reduction of Ni ore in Fe-Ni foundry in Drenas.” PHD, Mitrovica, Republic of Kosovo. November 2012.
  • [2] Z. Bajraktari Gashi, Rr. Maksuti, N. Murati, “The Usage of Pet Kok is a Possibility of Reducing the Amount of Heavy Oil in the Rotary Kilns in the New Foundry of the New Ferronikel in Drenas”. Appl. Mech. & Mat. 749, pp:111-115, 2015
  • [3] Z. Gashi, I. Gashi, M. Rama, “Mathematical modeling of nickel ores pre-reduction simulations in laboratory rotary kiln “Linder”. International Journal of General Engineering and Technology (IJGET). pp:17-28, India,2013
  • [4] Z. Gashi, Sh. Imeri, N. Lohja, M. Zabeli, N. Tahiraj, N. Murati, “Experimental Research on prereduction of Nickel silicate ore in New Ferronickel Factory in Drenas”, WSEAS and NAUN Conferences, Corfu Island, Greece, July 14-17, p. 306-311, 2011
  • [5] Z. Gash, Sh. Imeri, N. Tahiraj, “Kosovo dry lignite treatment in the process of ore frying in the smelter of New Co Ferronickel in Drenas”, SGEM-201111thInternational Multidisciplinary Scientific Geo Conference. pp:1125-1129, Bulgaria
  • [6] Official documentation of melting complex of New Ferronikeli Complex L.L.C. Gllogoc, 2009 -2017.
  • [7] Z. Bajraktari-Gashi, M. Zabeli,” Factors Affecting the Increase in the Pre-reduction Scale of the Fe-Ni Ore in the Rotary Kil”, Journal Int. Environ. & Sci..12, 52-58,2017
  • [8] Z. Bajraktari-Gashi, M. Zabeli, B. Halilaj,” The impact of pet-kok in the technological process of production of Fe-Ni in the new foundry of the new Ferronikel in Drenas”. Journal Int. Environ. & Sci Vol.13, 2018.
  • [9] Zarife Bajraktari-Gashi, “Nickel and Ferronickel”. University Book. 2018 (in press).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bebbb485-0e70-495b-8ab2-794c428710c1
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