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BENEFICIATION PROCESSES
Название Assessment of factors affecting the processing of copper-molybdenum off-balance ore
DOI 10.17580/or.2019.05.04
Автор Saltykova S. N., Nazarenko M. Yu.
Информация об авторе

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

Saltykova S. N., Associate Professor, Candidate of Engineering Sciences, saltykova_sn@spmi.ru
Nazarenko M. Yu., Assistant, Candidate of Engineering Sciences, max.nazarenko@mail.ru

Реферат

Research into the role of microorganisms in the destruction of silicates is gaining momentum due to the development of a new area based on the use of bacteria in mineral processing technologies. The aim of this work was to study the effect of preliminary biological treatment of copper-molybdenum off-balance ores on their further processing. Head and biologically treated copper-molybdenum ore was studied. The samples were placed in a muffle furnace and heat-treated. The calcination was performed at 400, 450, 500, 550, 600 and 650 °C. The calcination and leaching studies conducted for off-balance refractory copper-molybdenum ore, as well as a comparison of the results of these processes in the presence of preliminary biotreatment, have shown that biotreatment facilitates the liberation of copper minerals and improves copper recovery into the solution both with and without calcination before leaching. This is explained by the destruction of the crystalline structure in the ore materials and by the facilitation of access to copper-containing minerals for oxygen (in calcination) and chemicals (in leaching). Preliminary biotreatment allows separating the maximum amount (up to 12 % of the sample weight) of the magnetic fraction already at 400 °С, which will positively affect the subsequent leaching process. When the proposed process flow is applied for the processing of off-balance copper-molybdenum ore, two by-products are generated: the magnetic fraction and the leaching residue. The former may be used in ferrous metallurgy as a flux in the production of pig iron and steel, and the latter may be applied in the manufacture of building materials.

Ключевые слова Ore, biotreatment, calcination, muffle furnace, leaching, magnetic separation, magnetic fraction, non-magnetic fraction
Библиографический список

1. Bobrakova A. A., Kuptsova A. V., Aleksandrova T. N. Searching of ways of increasing of complexity of molibdenumcontaining raw materials use. Gornyi Zhurnal. 2014. No. 11. pp. 83–87.
2. Ganbaatar Z., Nazarov Yu. P., Polyanskiy M. V. Development of the circuit designs with the processing of copper-molybdenium ores by the example of Erdenet Mining Corporation. Gornyi Zhurnal. 2012. No. 11. pp. 34–39.
3. Adamov E. V., Panin V. V. Biohydrometallurgical processes in mineral processing technology. Leningrad: Nauka, 1990. 215 p.
4. Zubkov A. A., Shulenina Z. M., Vorob'ev A. E. Receipt of rare-earth and rare metals from the poor and untraditional of raw. Vestnik Rossiyskogo Universiteta Druzhby Narodov. Seriya: Inzhenernye Issledovaniya. 2014. No. 2. pp. 40–49.
5. Maluckov B. S. The catalytic role Acidithiobacillus ferrooxidans for metals extraction from mining — metallurgical recourse. Biodiversity International Journal. 2017. Vol. 1, Iss. 3. pp. 1–12.
6. Gudkov S. S., Shketova L. E., Mikhajlova A. N. Bacterial leaching of refractory ores and concentrates. Gornyi Zhurnal. 2011. No. 4. pp. 27–28.
7. Khainasova T. S. Factors affecting bacterial and chemical processes of sulphide ores processing. Zapiski Gornogo Instituta. 2019. Vol. 235. pp. 47–54.
8. Purevdash М. Bacterial leaching of coppermolybdenum refractory ore of the Erdenetiin Ovoo deposit: Dissertation abstract … of Candidate of Engineering Sciences. St. Petersburg: SPGGI, 2009. 20 p.
9. Trifonova N. А. Study of the role of microorganisms in the processes of destruction of natural phosphorites of Jeroy-Sardarya deposit. Gornyi Zhurnal. 2008. No. 6. pp. 87–90.
10. Lu Y., Li J., Ye H., Xu D., Chen S. Bioleaching of electrolytic manganese residue by silicate bacteria, and optimization of parameters during the leaching process. Mining, Metallurgy & Explotation. 2018. Vol. 35, Iss. 4. pp. 176–183.
11. Lv Y., Li J., Ye H., Du D., Gan C., Wuri L., Sun P., Wen J. Bioleaching of silicon in electrolytic manganese residue using single and mixed silicate bacteria. Bioprocess and Biosystems Engineering. 21 August 2019. pp. 1–10. DOI: 10.1007/s00449-019-02178-7.
12. Daryin A. A., Maksimova A. V., Telyakov A. N., Fuks A. M. Study of silicate bacterial destructive effect on quartziferous ores. Obogashchenie Rud. 2015. No. 4. pp. 8–12. DOI: 10.17580/or.2015.04.02.
13. Zhao J., Wu W., Zhang X., Zhu M., Tan W. Characteristics of bio-desilication and bio-flotation of Paenibacillus mucilaginosus BM-4 on aluminosilicate minerals. International Journal of Mineral Processing. 2017. Vol. 168. pp. 40–47.
14. Polkin S. I., Adamov E. V., Panin V. V. Technology of bacterial leaching of non-ferrous and rare metals. Мoscow: Nedra, 1982. 307 p.
15. Mongush G. R. Application of biotechnology for processing mineral deposits of Tuva. Novye Issledovaniya Tuvy. 2010. No. 1. pp. 228–242.
16. Sargasyan L. Е., Оganesyan А. М. Phase transformations in copper concentrate with high pyrite content under polythermal heating. Tsvetnye Metally. 2006. No. 7. pp. 16–18.
17. Ganbaatar Z., Avdokhin V. М. Increase of efficiency of mineral complexes disclosure in processes of ore preparation of copper-molybdenum ores. Gornyi Informatsionnoanaliticheskiy Byulleten. 2003. No. 3. pp. 55–57.
18. Purevdash М., Saltykova S. N., Afanaschenko Ye. S., Telyakov N. М. Effect of silicate bacteria on mineral constituents of commercial ores. Obogashchenie Rud. 2011. No. 1. pp. 15–18.
19. Aleksandrova T. N., Prokhorov K. V., Lvov V. V. Recovery of magnetic fraction from coal combustion waste by high-gradient magnetic separation. Gornyi Zhurnal. 2015. No. 12. pp. 4–8.

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