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BENEFICIATION TECHNOLOGY
Название The Oshurkovskoye deposit apatite ore material composition and dry processing technology
DOI 10.17580/or.2016.02.02
Автор Dmitriev S. V., Kotova E. L., Mezenin A. O.
Информация об авторе

REC «Mekhanobr-tekhnika» (Russia):

Dmitriev S. V., Chief Specialist, dmitriev_sv@npk-mt.spb.ru

Mezeniv A. O., Ph. D. in Engineering Sciences, Chief Specialist, mezenin_ao@npk-mt.spb.ru

 

National Mineral Resources University (University of Mines) (Russia):

Kotova E. L., Ph. D. in Geology and Mineralogy, Senior Researcher, sattelite24@yandex.ru

Реферат

The results of the Oshurkovskoye deposit apatite ore material composition study are presented. The deposit is located in a special ecological requirements zone in Transbaikalia. Development of a dry processing technology based on vibrational fluidization effect has been considered for the ore in question. Due to the fact that the deposit is located in a dry zone, the conventional flotation method application is not possible because of the special environmental status of the area. For this reason, the developed flow sheet for the apatite ore processing is based on dry methods of beneficiation combined with vibrational effects. The mineralogical-petrographic studies have been performed, including diagnosis of special features of the mineral composition, quantitative analysis of the ore apatite grade, apatite intergrowth with other minerals has been assessed with respect to aggregates composition, character of interfaces and types of intergrowth. The Oshurkovskoye deposit ore material composition study showed that all studied specimens were represented by diorite and syenite-diorite ores with fairly homogeneous mineral composition and rather low — approximately 4 % — Р2О5 content. Grains of main ore and barren minerals, including apatite, are 0.1–0.2 mm and over in size, which is contributory to dry physical methods of beneficiation. On the basis of the ore material composition, a process flow diagram has been developed for dry beneficiation of the ore in question, including electromagnetic separation in fluidized state, permitting to produce apatite rougher concentrate with Р2О5 grade of 16.5 %, suitable for subsequent flotation upgrading stage, providing for saleable quality product.

The work was performed with the aid from the Ministry of Education and Science of the Russian Federation, the Government Agreement No. 14.579.21.0023. UIPNI RFMEFI57914X0023.

Ключевые слова Аpatite ore, mineral composition, electromagnetic separation, dry beneficiation, vibratory fluidization
Библиографический список

1. Kalugin A. I., Levin B. V. Preferred directions and implementation of comprehensive utilization of the Khibiny apatitenepheline ore. Gornyi Zhurnal = Mining Journal, 2014, No. 10, pp. 63–69.
2. Kalugin A. I., Pleshakov Yu. V., Gerasimova L. G., Nikolaev A. I. Innovative processing technologies for apatite-nepheline concentrates. Ibidem, pp. 69–73.
3. Brylyakov J. E., Nikolaev A. I, Gerasimova L. G. Perspective directions of technology of processing of concentrates for complex preparation of apatitenepheline ores. Gornyi Zhurnal = Mining Journal, 2009, No. 9, pp. 62–65.
4. Dutra A., Santos E., Oliveira J. Jojoba oil as alternative collector in the selective flotation of apatite and calcite at slightly acid conditions. Proc. of the XXVII Intern. Mineral Processing Congress, Santiago, Chile, Gecamin, 2014, Chap. 2, pp. 359–367. 1 electron optical disc (DVD-ROM).
5. Levin B. V., Angelov A. I., Golovanov V. G. Production and chemical processing of increased size Kola apatite concentrate. Khimicheskaya Promyshlennost Segodnya = Chemical Industry Today, 2005, No. 4, pp. 42–48.
6. Arsentyev V. A., Vaisberg L. A., Ustinov I. D. Trends in development of low-water-consumption technologies and machines for finely ground mineral materials processing. Obogashchenie Rud = Mineral Processing, 2014, No. 5, pp. 2–9.
7. Crigg N., Delemontex G. Higher grades and better recovery through pre-concentration of precious and base metal ores. Proc. of the XXVII Intern. Mineral Processing Congress, Santiago, Chile, Gecamin, 2014, Chap. 17, pp. 60–72. 1 electron optical disc (DVD-ROM).
8. Arsentyev V. A., Blekhman I. I., Vasilkov V. B., Azbel Yu. I., Yakimova K. S. Vibration-induced phenomena in bulk granular materials. International Journal of Mineral Processing, 2011, Vol. 100, Iss. 3–4, pp. 79–85.
9. Blekhman I. I., Ivanov K. S. On a vibroimpact system in which chaos is caused by the rare attractor packing. Proc. of the 2nd Intern. Symp. «Rare Attractors and Rare Phenomena in Nonlinear Dynamics» (RA'11), May 17–20, 2011, Riga–Jurmala, Latvia, pp. 95–100.
10. Duru P., Nicolas M., Hinch J., Guazzelli É. Constitutive laws in liquid-fluidized beds. Journal of Fluid Mechanics, 2002, Vol. 452, pp. 371–404.
11. Majumdar S. N., Kearney M. J. Inelastic collapse of a ball bouncing on a randomly vibrating platform. Physical Review E, 2007, Vol. 76, Iss. 3, 031130.
12. Kudrolli A. Size separation in vibrated granular matter. Reports on Progress in Physics, 2004, Vol. 67, No. 3, pp. 209–248.
13. Trujillo L., Herrmann H. J. Anote on the upward and downward intruder segregation in granular media. Granular Matter, 2003, Vol. 5, No. 2, pp. 85–89.
14. Mezenin A. O., Dmitriev S. V., Kuskov V. B., Lvov V. V. Study of hematite ore dry magnetic processing with application of vibratory pseudo-liquefaction effect. Obogashchenie Rud = Mineral Processing, 2012, No. 2, pp. 21–24.

Language of full-text русский
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