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Preparation of raw materials
Название Computational and theoretical analysis of iron ore concentrate prophylaxis with lime
Автор K. B. Pykhteeva, B. S. Tleugabulov, D. N. Volkov, S. G. Melamud
Информация об авторе

Nizniy Tagil technological institute, affi liate of the Ural Federal university (Nizhniy Tagil, Russia):

Pykhteeva K. B., Dr. Eng., Ass. Prof.
Tleugabulov B. S., Dr. Eng., Ass. Prof.


Vysokogorskiy mining and concentrating works – VGOK (Nizhniy Tagil, Russia):
Volkov D. N., Chief agglomerant of the technical dept.

 

Scientific-production regional corporation “Ural” (Ozersk, Russia):
Melamud S. G., Dr. Eng., Senior scientifi c fellow, Deputy gen. director on science

 

E-mail: pyhkb@mail.ru

Реферат

The relationships defining quantitative and qualitative characteristics of the iron ore concentrate production have been concluded by the computational and theoretical analysis of the lime prophylaxis process. The industrial tests with lime introduction in the agglomerate charge material have been conducted. Applying to the conditions of JSC “VGOK” production, the influence of different factors on the quality of the prophylaxed concentrate is specified. Based on the developed algorithm for calculation of parameters of iron ore concentrate prophylaxis process with lime, the effect of lime consumption on the level of ferrum and calcium oxide in the final product has been determined. The calculation data are well agreed with the statistical data processing results. Initial humidity of the iron ore concentrate has a major effect on the final humidity of the prophylaxed concentrate. The optimal lime consumption is calculated for the prophylaxis of iron ore congelation. It is recommended to use the obtained relationships also in lime processing of other kinds of mineral raw materials.

Ключевые слова Mining and concentrating works, iron ore concentrate, lime, prophylaxis, fluxing, hydratation, wet magnetic separation, calcination losses
Библиографический список

1. Lepnev M. I., Severinova E. P. Gruzy i moroz: (protsessy smerzaniya i vosstanovleniya sypuchesti gruzov) (Cargo and frost: (processes of freezing and renewal of cargo friability)). Moscow : Transport, 1988. 143 p.
2. Gen-Sheng Feng, Sheng-Li Wu, Hong-Liang Han et al. Sintering characteristics of fluxes and their structure optimization. International Journal of Minerals, Metallurgy and Materials. 2011. No. 6, Vol. 18, Issue 3. pp. 270–276.
3. C. Hong, Y. Xing, Y. X. Si et al. Lime-Mediated Sewage Sludge and Gas Ash use as Metallurgy Sintering Ingredients. Advanced Materials Research. 2013. No. 9, Vol. 779–780. pp. 1623–1628.
4. Loo C. E., Ellis B. G. Changing Bed Bulk Density and other Process Conditions during Iron Ore Sintering. ISIJ International. Vol. 54 (2014), No. 1. pp. 19–28.
5. Sukharev A. G., Volkov D. N., Leushin V. N., Chikishev V. Yu., Kobelev V. A. Razrabotka tekhnologii effektivnogo ofl yusovaniya aglomeratsionnoy shikhty v otkrytom aktsionernom obshchestve «EVRAZ KGOK» (Development of technology of efficient fl uxing of agglomeration charge in “EVRAZ KGOK” JSC). Gornyi Zhurnal = Mining Journal. 2013. No. 9–1. pp. 23–26.
6. Busby N. J., Fray T. A. T. Fundamentalbye issledovaniya fazovogo sostava i struktuty aglomerata s tselyu optimizatsii ego metallurgicheskikh svoistv (Fundamental investigations of the phase composition and structure of agglomerate for the purpose of optimization of its metallurgical properties). Pyrometallurgy 1987: Symposium. London, 21–23 September, 1987. pp. 141–166.
7. V. A. Kobelev, A. Yu. Chernavin et al. Aglomeratsionnyy flyus, shikhta i sposob ego proizvodstva (Agglomeration flux, charge and its production method). Patent RF, No. 2465350. Published: October 27, 2012. Bulletin No. 30.
8. Kiper R. A. Svoystva veshchestv : spravochnik po khimii (Substance properties : chemistry reference book). Khabarovsk, 2013. 1016 p.
9. Rabinovich V. A., Khavin Z. Ya. Kratkiy khimicheskiy spravochnik (Brief chemical reference book). Leningrad : Khimiya, 1991. 432 p.
10. Filatov S. V., Kurunov I. F., Semenov O. A., Mansurova N. R., Kobelev V. A. Optimizatsiya raskhoda izvesti pri vvode v agloshikhty s tselyu povisheniya kachestva aglomerata (Optimization of lime consumption during the introduction into agglocharge for the purpose of increasing of agglomerate quality). Stal = Steel in Translation. 2014. No. 10. pp. 7–9.
11. Kurkin V. M., Tabakov M. S., Kashkarov E. A., M. A. Gurkin, T. V. Detkova, S. V. Reshetkin. Effect of lime on sintering. Metallurgist. 2007. Vol. 51, Iss. 7. pp. 420–424.
12. Korotich V. I., Frolov Yu. A., Kaplun L. I. Teoreticheskie osnovy tekhnologiy okuskovaniya metallurgicheskogo syrya (Theoretical basis of metallurgical raw material agglomeration technologies). Aglomeratsiya : uchebnoe posobie (Agglomeration : tutorial). Ekaterinburg : Ural State Technical University — Ural Polytechnical Institute, 2005. 417 p.
13. Bersenev I. S., Klein V. I., Zarshchikov P. I., Osokin N. A., Shcheglov V. N. Lime Production in a MAK-90 Sintering Machine. Steel in Translation. 2013. Vol. 43, Iss. 4. pp. 193–196.
14. Lebedev A. F. Pochvennye i gruntovye vody (Soil and ground waters). Forth edition. Moscow – Leningrad : Publishing House of USSR Academy of Sciences, 1936. 320 p.
15. Puzanov V. P., Kobelev V. A. Strukturoobrazovanie iz melkikh materialov s uchastiem zhidkikh faz (Structure formation from fine materials with the participation of liquid phases). Ekaterinburg : Ural Branch of Russian Academy of Sciences, 2001. 634 p.
16. Sulimenko E. I. Proizvodstvo okatyshey (Pellet production). Moscow : Metallurgiya, 1988. 128 p.
17. Meyer K. Pelletizing of Iron Ores. Springer-Verlag Berlin, 1980. 302 p.

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