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BENEFICIATION PROCESSES
Название Cryptocrystalline graphite chemical-mechanical preparation for subsequent processing stages
DOI 10.17580/or.2016.02.03
Автор Gilmanshina T. R., Lytkina S. I., Zhereb V. P., Koroleva G. A.
Информация об авторе

Siberian Federal University (Russia):

Gilmanshina T. R., Ph. D. in Engineering Sciences, Associate Professor, gtr1977@mail.ru

Lytkina S. I., Ph. D. in Engineering Sciences, Associate Professor, svetka-lisa@mail.ru

Zhereb V. P., Doctor of Chemistry, Professor, Head of Chair, lpiomd@bk.ru

Koroleva G. A., Ph. D. in Chemistry, Associate Professor, lpiomd@bk.ru

Реферат

A combined effect of chemical treatment and mechanical activation upon cryptocrystalline graphite condition was studied. Chemical-mechanical preparation was accomplished by means of sulfuric acid in the presence of potassium bichromate with subsequent activation in planetary centrifugal mill AGO-2 in optimal regimes. By means of optical and scanning electron microscopy, differential thermal analysis and X-ray phase analysis, it was established that consecutive chemical and mechanical treatment of natural cryptocrystalline graphite leads to liberation of graphite intergrowths with impurity minerals, permitting to decrease impurities content in its composition, also providing for decrease in particle average size and increase in nano-size fractions content. Removal of sulfur-containing compounds from graphite composition will hamper oxidation reactions of iron sulfur-containing compounds during crude iron casting into molds, preventing formation of sulfide-containing lowmelting phases in surface layer of antistick coating in cast iron-coating interface, contributing to antistick coating unwettability with molten iron and significantly decreasing burning-on formation on castings.

Ключевые слова Cryptocrystalline graphite, chemically-mechanically activated graphite, antistick coating for iron casting, high-temperature X-ray phase analysis, X-ray diffractometer XRD-7000, differential thermal analysis (DTA)
Библиографический список

1. Tomilin V. N. Graphites and coals of Turukhansk Krai. Gornyi Zhurnal = Mining Journal, 1992, No. 6–9, pp. 274–294.
2. Melnikov I. I., Veselovskiy V. S. Sostoyaniye i perspektiva razvitiya syryevoy bazy grafita SSSR (State and prospects of raw material base of the USSR graphite). Moscow, 1967, 33 pp. (Overview. USSR Ministry of Geology. ONTI VIEMS. The economy of mineral resources and geological exploration, Iss. 9).
3. Poluboyarov V. A., Andryushkova O. V., Pauli I. A., Korotaeva Z. A. Vliyaniye mekhanicheskikh vozdeystviy na fizikokhimicheskiye protsessy v tverdykh telakh (Influence of mechanical effects on physical and chemical processes in solids). Novosibirsk, Novosibirsk State Technical University, 2011, 604 pp.
4. Gurin I. V., Gurin V. A., Gribanov Yu. A., Kravtsov Ya. V., Bukolov A. N., Gujda V. V., Kolosenko V. V. High-purity carbon composite materials. PASТ, 2014, No. 1 (89), pp. 16–20.
5. Vasumathi N., Vijaya Kumar T. V., Ratchambigaiand S. et al. Single reagent for graphite flotation. Proceedings of the ХIII International Seminar on Mineral Processing Technology (MPT—2013), 2013, pp. 145–153.
6. Gao W., Majumder M., Alemany L. B., Narayanan T. N., Ibarra M. A., Pradhan B. K., Ajayan P. M. Engineered graphite oxide materials for application in water purification. ACS Applied Materials & Interfaces, 2011, No. 3, pp. 1821–1826.

7. Roscoe Postle Associates Inc. Technical Report on the Lac Knife Project, Northern Quebec, Canada. NI 43-101. October 30, 2012. URL: http://www.infomine.com/index/pr/pb268588.pdf. Accessed on 18.03.2016.
8. Pat. 2357803 RU.
9. Gilmanshina T. R. Razrabotka sposobov povysheniya kachestva liteynogo grafita otdelnymi i kompleksnymi metodami aktivatsii. Dissertatsiya… kandidata tekhnicheskikh nauk (Developing ways to improve the quality of foundry graphite by separate and complex methods of activation. Ph. D. dissertation). Krasnoyarsk, 2004, 140 pp.
10. Smirnov O. M., Krushenko G. G., Shchipko M. L., Smirnov O. O., Makhrova J. V. Beneficiation of the graphite ore from the Kureyka deposit. Obogashchenie Rud = Mineral Processing, 1999, No. 1–2, pp. 19–22.
11. Mamina L. I., Gilmanshina T. R., Novozhonov V. I. et al. Sposoby povysheniya kachestva liteynogo grafita otdelnymi i kompleksnymi metodami aktivatsii (Ways to improve the quality of foundry graphite by separate and complex methods of activation). Krasnoyarsk, Siberian Federal University, Institute of Non-Ferrous Metals and Materials Science, 2011, 160 pp.
12. Gilmanshina T. R., Bezrukikh A. I., Mamina L. I., Koroleva G. A., Novozhonov V. I. Development of technology for production of new grades of foundry cryptocrystalline graphite. Liteyshchik Rossii = Russian Foundry Men, 2007, No. 11, pp. 43–47.
13. Fundamentalnyye osnovy mekhanicheskoy aktivatsii, mekhanosinteza i mekhanokhimicheskoy tekhnologii. Otvetstvennyy redaktor E. G. Avvakumov (Fundamentals of mechanical activation, mechanical synthesis and mechanochemical technology. Executive editor E. G. Аvvakumov). Ser. Integration projects of SB RAS. Iss. 19. Novosibirsk, Siberian Branch of the RAS, 2009, 343 pp.
14. Avvakumov E. G., Gusev A. A. Mekhanicheskiye metody aktivatsii v pererabotke prirodnogo i tekhnogennogo syrya (Mechanical methods of activation in the processing of natural and technogenic raw materials). Institute of Solid State Chemistry and Mechanochemistry of the Siberian Branch of the Russian Academy of Sciences. Novosibirsk, Academic Publishing House «GEO», 2009, 155 pp.
15. Mamina L. I., Gilmanshina T. R., Anikina V. I., Baranov V. N., Lytkina S. I., Abkaryan A. K., Khudonogov S. A. Influence of activation time on parameters of graphite structure. Izvestiya Vuzov. Poroshkovaya Metallurgiya i Funktsionalnyye Pokrytiya = Proceedings of Higher Schools. Powder Metallurgy and Functional Coatings, 2014, No. 3, pp. 21–25.
16. Lytkina S. I. Razrabotka i issledovaniye protivoprigarnykh pokrytiy dlya chugunnogo litya na osnove khimicheski i mekhanokhimicheski aktivirovannykh grafitov. Dissertatsiya… kandidata tekhnicheskikh nauk (Development and research of antiburning coatings for cast iron based on chemically and mechanochemically activated graphite. Ph. D. dissertation). Krasnoyarsk, 2013, 128 pp.

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