Журналы →  Gornyi Zhurnal →  2018 →  №10 →  Назад

PROCESSING AND COMPLEX USAGE OF MINERAL RAW MATERIALS
Название Non-conventional technologies for gold extraction from commercial placers of Priamurye
DOI 10.17580/gzh.2018.10.10
Автор Alekseev V. S., Banshchikova T. S.
Информация об авторе

Institute of Mining, Far East Branch, Russian Academy of Science, Khabarovsk, Russia:

V. S. Alekseev, Senior Researcher, Candidate of Engineering Sciences, alekseev-vs_83@mail.ru
T. S. Banshchikova, Senior Researcher

Реферат

A significant part of industrial gold is contained in hard-to-recover, thin-plate, scaly forms, dendrites and fine particles that are lost with tailings during dressing by gravity. Water flows wash out mediumsized gold with a high flattening coefficient, which identifies the deformed surface belonging to the category of “rebellious” species. The Institute of Mining, FEB RAS, has developed several methods to extract gold from mining waste. The technologies are based on the application of: a halogen-containing reagent, which improves hydrophilic properties of gold; a natural sorbent, which allows extracting fine particles (70 microns or less); surfaceactive substances of anionic type–to reduce surface tension of water and to concentrate gold particles with a high coefficient of flattening. As a chemical reagent, the mixture of an alcohol solution of iodine and an aqueous solution of potassium iodide at a solid-to-liquid ratio of 1:2 and pH 7–9 is used. In the process of chemisorptions, a strong compound with an ion bond [AuI4] is temporarily formed on the gold surface to increase the hydrophilic property of gold. The high-scale technological tests of the proposed method have been carried out using the current tailings available the Solovievsky gold placer and at the other gold mining sites of Priamurye. With the above-described reagent used, the gold content has been increased and this fact has been observed at all five test sites, with the highest positive effect reached in case of the size grade -0.1 mm. For extracting gold from concentrates with amalgamation, the halogen-containing solution has been proposed, which makes it possible to exclude formation of mercury drop and to reduce metal loss. The use of surfactants and sorbents allows extraction of gold with a high coefficient of flattening, as well as fine particles from the silt-clay sediments. The proposed methods can be used for improving gold concentrates at any mine; the reagents need no extra energy input for preparation, are inexpensive, quite affordable and eco-friendly.

Ключевые слова Mining and processing waste, clay deposits, “rebellious” gold, gold hydrophilicity, chemical reagent, amalgamation, surfactant, sorption
Библиографический список

1. Rasskazov I. Yu., Litvintsev V. S., Mirzekhanov G. S., Banshchikova T. S. Priority directions of the development of technogenic complexes of ore-alluvial deposits. Nedropolzovanie-XXI vek. 2016. No. 1. pp. 46–55.
2. Chanturiya V. А., Vaisberg L. A., Kozlov А. P. Promising trends in investigations ai med at all-round utilization of mineral raw materials. Obogashchenie Rud. 2014. No. 2. pp. 3–9. DOI: 10.17580/or.2014.02.01
3. Fedotov P. K ., Senchenko A. E., Fedotov K. V., Burdonov A. E. Analysis of industrial studies of gold ores of a Chukotka deposit. Obogashchenie Rud. 2018. No. 2. pp. 23–29. DOI: 10.17580/or.2018.02.05
4. Adams M. D. G old Ore Processing: Project Development and Operations. 2nd ed. Amsterdam : Elsevier, 2016. 980 p.
5. Galich V. M., Sychev Valt. V., Sychev Vad. V. Increase in the overall recovery of fine and very fine gold from spoil banks. Obogashchenie Rud. 2000. No. 6. pp. 30–33.
6. Litvintsev V. S. Basic directions of the strategy of mastering of anthropogenic ore and placer deposits of noble metals. Eurasian Mining. 2014. No. 1. pp. 7–11.
7. Mamaev Ju. A., Litvintsev V. S., Ponomarchuk G. P., Banshchikova T. S., Shokina L. N. Fine gold recovery method. Patent RF, No. 2235796. Applied: 10.02.03. Published: 10.09.04. Bulletin No. 25.
8. Mamaev Ju. A., Litvintsev V. S., Ponomarchuk G. P., Banshchikova T. S., Shokina L. N., Podshivalov V. S. Method of finishing of the rough gold-bearing concentrates. Patent RF, No. 2287596. Applied: 17.06.2005. Published: 20.11.2006. Bulletin No. 32.
9. Shokina L. N., Ponomarchuk G. P., Alekseev V. S., Litvintsev V. S. Method for extracting floating shapes of gold from gold-bearing mineral products. Patent RF, No. 2440430. Applied: 20.12.2010. Published: 20.01.2012. Bulletin No. 2.
10. Puddephatt R. J. The Chemistry of Gold. Translated from English. Moscow : Mir, 1982. 264 p.
11. Marsden J. O., House C. I. The Chemistry of Gold Extraction. 2nd ed. Colorado : Society for Mining, Metallurgy, and Exploration, 2006. 625 p.
12. Koch A. G. Gold Prospecting & Placer Deposits: Finding Gold Made Simpler. Createspace Independent Publishing Platform, 2013. 152 p.
13. Van Loon S., Bond J. D. Yukon Placer Mining Industry 2010 to 2014 : Report. Whitehorse : Yukon Geological Survey, 2014. 242 p.
14. Ishida R., Arii S., Kurashige W., Yamazoe S., Koyasu K. et al. Halogen adsorbates on polymerstabilized gold clusters: Mass spectrometric detection and effects on catalysis. Chinese Journal of Catalysis. 2016. Vol. 37, Iss. 10. pp. 1656–1661.
15. Mohr F., Schmidbaur H. Gold Chemistry: Applications and Future Directions in the Life Sciences. Weinheim : Wiley-VCH, 2009. 424 p.
16. Yushkin N. P., Askhabov A. M., Rakin V. I., Glukhov Yu. V., Golubev E. A. et al. Nanomineralogy. Ultraand Micro-Dispersion of Mineral Substances. Saint-Petersburg : Nauka, 2005. 581 p.
17. Litvintsev V. S. Resource potential of placer mining waste. Journal of Mining Science. 2013. Vol. 49, Iss. 1. pp. 99–105.
18. Zamyatin O. V., Lopatin A. G., Sannikova N. P., Chugunov A. D. Benefication of gold-bearing sands and conglomerates. Moskva : Nedra, 1975. 261 p.
19. Kuznetsov V. G. Lithology. Sedimentary Rocks and Analysis. Moscow : Nedra-Biznestsentr, 2007. 511 p.
20. Betekhtin A. G. Mineralogy Course: Tutorial. Moscow : KDU, 2007. 721 p.

Language of full-text русский
Полный текст статьи Получить
Назад