COMPARATIVE STUDY OF THE SOUTH URALS MAGNESIUM MATERIALS BEHAVIOR AT THE SINTERING PROCESS TEMPERATURE
https://doi.org/10.17073/0368-0797-2016-11-814-820
Abstract
About the Authors
E. V. OvchinnikovaRussian Federation
Postgraduate of the Chair “Energy-efficient and Resource-saving Industrial Technologies”,
Moscow
V. B. Gorbunov
Russian Federation
Cand. Sci. (Eng.), Assist. Professor of the Chair “Energy-efficient and Resource-saving Industrial Technologies”,
Moscow
A. N. Shapovalov
Russian Federation
Сand. Sci. (Eng.), Assist. Professor of Chair “Metallurgical Technology and Equipment”,
Novotroitsk, Orenburg Region
S. A. Pisarev
Russian Federation
MA Student,
Moscow
N. M. Durov
Russian Federation
Cand. Sci. (Eng.), Senior Lecturer of the Сhair “Energyeffi cient and Resource-saving Industrial Technologies”,
Moscow
References
1. Krasnoborov V.A., Yaroshevskii S.L., Denisov A.A., Rudin V.S., Biryuchev V.I., Polushkin M.F. Eff ektivnost’ i perspektivy primeneniya sideritovykh rud v domennoi plavke [Effi ciency and application prospects of siderite ore in blast furnace smelting]. Donetsk: Novyi mir, 1996, 74 p. (In Russ.).
2. Shapovalov A.N., Zavodyanyi A.V., Bratkovskii E.V. Use of metallic serpentito-magnsite ore from Halilovskoe deposit for agglomerate production. Izvestiya VUZov. Chernaya metallurgiya = Izvestiya. Ferrous Metallurgy. 2011, no. 3, pp. 25–29. (In Russ.).
3. Ivanova V.P., Kasatonov B.K., Krasavina T.N., Rozinova E.L. Termicheskii analiz mineralov i gornykh porod [Thermal analisis of minerals and rocks]. Leningrad: Nedra, 1974, 399 p. (In Russ.).
4. Shatalova T.B., Shlyakhtin O.A., Veryaeva E.S. Metody termichesko go analiza: Metodicheskaya razrabotka [Methods of thermal analysis. Methodical development]. Moscow: MGU im. Lomonosova, 2011, 72 p. (In Russ.).
5. Pan Y., Zhu R., Banerjee S.K., Gill J., Williams Q. Rock magnetic properties related to thermal treatment of siderite: Behavior and interpretation. Journal of geophysical research. 2000, vol. 105, no. B1, pp.783–794.
6. Gotor F.J., Maclas M., Ortega A., Criado J.M. Comparative study of the kinetic of the thermal decomposition of synthetic and natural siderite samples. Phys Chem Minerals. 2000, no. 27, pp. 495–503.
7. Dubrawski J.V. Thermal decomposition of some siderite-magnesite minerals using DSC. Journal of thermal analysis. 1991, vol. 37, pp. 1213–1221.
8. Shatsillo V., Melamud S., Lenegov A., Dudchuk I. Experience in the use of sideroplezit ore from Bakal depozite in the conditions of sinter plant. Natsional’naya metallurgiya. 2005, September–October, pp. 74–79. (In Russ.).
9. Klyuchkovskii S.P., Smirnov A.N., Savchenko I.A. Development of physical and chemical bases of an overall use of high-magnesia siderites. Vestnik MGTU im. G.I. Nosova. 2015, no. 1, pp. 26–31. (In Russ.).
10. Yur’ev B.P., Kostousova T.I. Study of the properties of siderite ore and its products after thermal processes. Izvestiya VUZov. Chernaya metallurgiya = Izvestiya. Ferrous Metallurgy. 1999, no. 3, pp. 17–23. (In Russ.).
11. Matyukhin V.I., Melamud S.G., Shatsillo V.V., Matyukhin O.V., Matyukhina A.V. The investigation of fi ring of siderite small fractions in rotary furnace. Izvestiya VUZov. Chernaya metallurgiya = Izvestiya. Ferrous Metallurgy. 2015, vol. 58, no. 9, pp. 652–657. (In Russ.).
12. Mineraly (spravochnik). T.II., vyp. 2: Prostye okisly [Minerals (reference book). Vol. II, Issue 2: Simple oxides]. Chukhrov F.V., Bonshtedt-Kupletskaya E.M. eds. Moscow: Nauka, 1965, 344 p. (In Russ.).
13. Vusikhis A.S., Dvinin V.I., Leont’ev L.I., Maizel’ S.G. Sposob podgotovki sideritov k domennoi plavke [Method of siderites preparation for blast furnace smelting]. Patent RF no. 2041963, MPK S22V1/04, publ. 20.08.1995. (In Russ.).
14. Logachev G.N., Pishnograev S.N., Gostenin V.A. Infl uence of roasted siderite concentrate in the sintering batch on blast-furnace performance at OAO MMK. Steel in Translation. 2012, vol. 42, no. 6, pp. 502–503.
15. Aleksandrov L.I. Evolution of sinter quality at “Tata Steel”. Novosti chernoi metallurgii za rubezhom. 2006, no. 4, pp. 30–32. (In Russ.).
16. Bliznyukov A.S. Quality improvement of sintered ores in relation to blast furnace operation. Novosti chernoi metallurgii za rubezhom. 2008, no. 1, pp. 22–27. (In Russ.).
17. Yang Jiaolong, Lu Longwen. Fu Lianchun, Li Huaiyan. Industrial of serpentine addition into burden of no. 5 blast furnace of WISCO. 6 International Congress on the Science and Technology of Ironmaking (ICSTI 2012) cluding 42 ABM Ironmaking Seminar and 13 ABM Iron Ore Symposium, Rio de Janeiro, Oct. 14-18, 2012. San Paulo: 2012, pp. 49–60.
18. Gur’eva V.A. Eff ect of alumina-magnesia raw on formation of ceramics properties. Vestnik OGU. 2011, no. 4 (123), pp.165–169. (In Russ.).
19. Shiroyan D.S., Gromova I.V., Elzhirkaev R.A. Study of the opportunities for processing serpentine-magnesite raw from Khalilovsk deposit into magnesium sulfate. Uspekhi v khimii i khimicheskoi tekhnologii. 2014, vol. XXVIII, no. 5, pp.122–125. (In Russ.).
20. Martinez E. The eff ect of particle size on the thermal properties of serpentine minerals. The American mineralogist. 1961, vol. 46, July–August, pp. 901–912.
21. Mineraly (spravochnik). T. IV, vyp. 1: Silikaty so strukturoi perekhodnoi ot tsepochechnoi k sloistoi, sloistye silikaty (kaolinovye mineraly, serpentiny, pirofillit, tal’k, slyudy) [Minerals (Reference book). Vol. IV, Issue 1: Silicates with structure transforming from chain-type to layer-type. Layer-type silicates (kaoline-type minerals, serpentine, profi llite, talcum]. Chukhrova F.V. ed. Moscow: Nauka, 1992, 599 p. (In Russ.).
22. Hršak D., Sučik G., Lazić L. The thermophysical properties of serpentinite. Metalurgija. 2008, vol. 47, no. 1, pp. 21–31. (In Czech).
23. Ashimov U.B., Bolotov Yu.A., Arykbaev R.K. Thermal analysis of serpentinites. Refractories (English translation of Ogneupory), 1990, vol. 30, no. 7–8, pp. 491–494.
24. Khoroshavin L.B. Forsterit 2MgO·SiO2 [Forsterite 2MgO∙SiO2 ]. Moscow: Teplotekhnik, 2004, 368 p. (In Russ.).
25. Malysheva T.Ya., Pavlov R.M. Bundle mineral composition influence on basicity of sinter with diff erent strength properties. Izvestiya VUZov. Chernaya metallurgiya = Izvestiya. Ferrous Metallurgy. 2012, no. 11, pp. 6–10. (In Russ.).
26. Vegman E.F. Zherebin B.P., Pokhvisnev A.N., Yusfi n Yu.S., Kurunov I.F., Paren’kov A.E., Chernousov P.I. Metallurgiya chuguna: Uchebnik dlya vuzov [Cast iron metallurgy: Textbook for universities]. Yusfi n Yu.S. ed. Moscow: IKTs “Akademkniga”, 2004, 774 p. (In Russ.).
27. Bayliss P., Warne S.St.J. Diff erential thermal analysis of siderite-kaolinite mixtures. American mineralogist. 1972, vol. 57, pp. 960–966.
Review
For citations:
Ovchinnikova E.V., Gorbunov V.B., Shapovalov A.N., Pisarev S.A., Durov N.M. COMPARATIVE STUDY OF THE SOUTH URALS MAGNESIUM MATERIALS BEHAVIOR AT THE SINTERING PROCESS TEMPERATURE. Izvestiya. Ferrous Metallurgy. 2016;59(11):814-820. (In Russ.) https://doi.org/10.17073/0368-0797-2016-11-814-820