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COMPLEX RAW MATERIAL UTILIZATION
Название Co-recovery of platinum-group metals and chrome in processing of low-grade dunite ore material
DOI 10.17580/or.2018.01.09
Автор Melnichuk M. S., Fokina S. B., Boduen A.Ya., Petrov G. V.
Информация об авторе

St. Petersburg Mining University (St. Petersburg, Russia):

Melnichuk M. S., Postgraduate Student, myguiero@gmail.com
Fokina S. B., Assistant, Candidate of Engineering Sciences, fokina_sb@mail.ru
Boduen A. Ya., Associate Professor, Candidate of Engineering Sciences, bodyen-anna@mail.ru
Petrov G. V., Professor, Doctor of Engineering Sciences, petroffg@yandex.ru

Реферат

The paper presents the results of the Nizhny Tagil dunite massif lowgrade platiniferous chromite ore (0.21 g/t Pt; 0.08 g/t Rh) material composition and processing technology studies. Gravity-magnetic processing flow sheet permits to recover platinum-containing magnetic concentrate with high grades of magnetite and platinum-iron alloys. Platinum recovery into magnetic product (0.35 % yield) is at least 70 % with hundred-fold beneficiation relative to feed ore. The reductive sulfuric acid leaching has been considered as a method of platinum-containing magnetic concentrate final dressing, providing for selective dissolution of iron and noble metals concentration in undissolved leaching residue. To provide for hydrochemical reduction of iron (III) present in leach solution to iron (II), iron powder was chosen, permitting to obtain saturated sulfate ferriferrous solutions, suitable for separation of iron vitriol as a marketable product. The study of physical and chemical regularities of magnetite reductive sulfuric acid decomposition permitted to determine iron leaching process optimal parameters: solution acidity – 200 g/l, twofold excess of metallic iron from theoretically required, temperature +70 °С, duration — 1.5 hr, L : S = 10 : 1. Platinum content in cake was 0.59 %, rhodium — 130 g/t with practically complete recovery of iron and chrome into solution — 95.1 and 98.9 %, respectively. On the basis of the accomplished studies, the dunite massif chromite ores integrated machine-processing flow sheet is proposed, providing for production of high-grade platinum-containing concentrate and chromite concentrate, complying with the requirements of the chemical production.

Ключевые слова Dunites, chromite ore, gravity-magnetic concentration flow sheet, chemical beneficiation, reductive sulfuric acid leaching, magnetite, platinum-group metals
Библиографический список

1. Platinum 2013: review. England: Johnson Matthey Public Limited Company. URL: http://www.platinum.matthey.com/documents/market-review/2013/full-review/english.pdf (accessed: 20.09.2017).
2. State report «On the state and use of mineral resources in the Russian Federation in 2013». Ministry of Natural Resources and Ecology of the Russian Federation. Moscow, 2014. 383 p.
3. Gurskaya L. I., Dodin D. A. Mineral resources of platinum group metals in Russia: expansion prospects. Regionalnaya Geologiya i Metallogeniya. 2015. No. 64. pp. 84–93.
4. The review of the platinum group metals (PGM) market in the CIS and the world. 5th ed., supplemented and revised. Moscow: Infomayn, 2012. February, No. 5. 112 p.
5. Benevolsky B. I., Vartanyan S. S. Main directions of development of mineral resources of precious metals. Razvedka i Okhrana Nedr. 2013. No. 4. pp. 23–27.
6. Cole S., Ferron C. J. A review of the beneficiation and extractive metallurgy of the platinum-group elements, highlighting recent process innovations. SGS Minerals Services. 2002. Vol. 54. pp. 811–818.
7. Kozlov A. P., Chanturiya V. A. Platinum-containing dunite ores and their beneficiation. Moscow: IPKON RAN, 2009. 148 p.
8. Lazarenkov V. G., Petrov S. V., Talovina I. V. Deposits of platinum metals. St. Petersburg: Nedra, 2002. 297 p.
9. Petrov G. V. Concentration of platinum metals during processing of traditional and non-traditional platinum-metal raw materials. St. Petersburg: Sankt-Peterburgskiy Gornyi Institut, 2001. 106 p.
10. Greyver T. N., Petrov G. V. Development of methods for processing complex and substandard raw materials containing rare elements and platinum metals. Tsvetnye Metally. 2000. No. 11/12. pp. 34–37.
11. Diakite M. L. L., Petrov G. V. Les perspectives d'extraction des métaux de platine et de chrome à partir des dunites. Revue de Métallurgie. 2011. Vol. 108, No. 7–8. pp. 447–450.
12. Methodical recommendations on the application of the Classification of the reserves of deposits and the forecast resources of solid minerals. Chrome ore. Moscow: FGU GKZ, 2007. 36 p.
13. Ramadan A. M., Farghaly M., Fathy W. M., Ahmed M. M. Leaching and kinetics studies on processing of Abu-Ghalaga ilmenite ore. International Research Journal of Engineering and Technology. 2016. Vol. 3, Iss. 10. pp. 46–52.
14. Artamonova I., Gorichev I., Izotov A., Pichugina N., Stepanov V. Application of probabilistic approach to describe the kinetic curves of dissolution and leaching of magnetite. Izvestiya Moskovskogo Gosudarstvennogo Tekhnicheskogo Universiteta MAMI. 2009. No. 1 (7). pp. 166–173.
15. Liu K., Chen Q., Yin Z., Hu H., Ding Z. Y. Kinetics of leaching of a Chinese laterite containing maghemite and magnetite in sulfuric acid solutions. Hydrometallurgy. 2012. Vol. 125–126. pp. 125–136.
16. Greyver T. N., Zaytseva I. G., Kosover V. M. Selenium and tellurium. Moscow: Metallurgiya, 1977. 336 p.
17. Motov D. L., Vasekha M. V. System Fe(OH)3(H2SO4)-Na2SO3-H2O as the base for ferrous cake conversion. Zhurnal Neorganicheskoy Khimii. 2004. Vol. 49, No. 10. pp. 1742–1745.
18. Analytical chemistry of platinum group metals. Zolotov Yu. A., Varshal G. M., Ivanov V. M. (eds). Moscow: KomKniga, 2003. 592 p.
19. Chemical Handbook. Nikolskiy B. P. (ed.). Leningrad: Khimiya, 1966. Vol. 1. 1072 p.

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