Журналы →  Gornyi Zhurnal →  2018 →  №10 →  Назад

PROCESSING AND COMPLEX USAGE OF MINERAL RAW MATERIALS
Название Chloride–hypochlorite leaching of gold from oxidized ores of the Malmyzh field
DOI 10.17580/gzh.2018.10.12
Автор Prokhorov K. V., Burdonov A. E.
Информация об авторе

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

K. V. Prokhorov, Senior Researcher, Candidate of Engineering Sciences, sciencecat86@gmail.com

 

Irkutsk National Research Technical University, Irkutsk, Russia:

A. E. Burdonov, Associate Professor, Candidate of Engineering Sciences

Реферат

An alternative non-cyanide method of gold leaching from oxidized ores of the Malmyzh field (Khabarovsk Territory) was investigated in the present work. The mineralogical studies showed the main components of quartz, hematite, goethite, kaolinite and muscovite. Pyrite is contained in its pure form and in intergrowths with chalcopyrite, azurite and malachite. Sphalerite, galena and arsenopyrite are observed in small amounts. Visible gold is not detected; gold is present in ultrathin dispersed form and in association with sulfi des. The initial gold content of ore is 0.8–0.95 g/t. Extraction of gold was carried out using freshly primed chloride–hypochloride solution The solution was prepared by electrolysis of a sodium chloride solution (NaCl) at a concentration of 20 g/dm3 with the addition of 0.1 N hydrochloric acid (HCl). Optimal conditions for obtaining a solution with the maximum concentration of active chlorine necessary for leaching of gold are determined. The scope of the study embraced gold extraction by agitation with preliminary exposure to pulp by preoxidation and cavitations (using ultrasound). The gold analysis was carried out by atomic absorption spectroscopy (AAC). Direct hypochlorite leaching resulted in gold recovery of 23.0 % in 4 hours and 72.7 % in 24 hours. After pre-oxidation and subsequent leaching with hypochlorite, the recovery was 80.2 % and 98.8 % in 4 and 24 hours, respectively. After ultrasonic treatment, the gold extraction was 36.7–66.5 % in 4 hours of agitation. The process of re-precipitation of recovered gold in solid phase and reduction in its extraction during prolonged agitation after preliminary ultrasonic treatment, both initial hypochlorite and pulp, is revealed. Re-precipitation occurs as a result of pH transition of the medium to the neutral range. Consequently, extraction of gold from the chloride–hypochlorite solution should be carried out in an acidic medium.

Ключевые слова Khabarovsk Territory, oxidized ores, pre-oxidation, non-cyanide leaching, electrolysis, hypochlorite, active chlorine, gold
Библиографический список

1. Puvvada G. V. K., Murthy D. S. R. Selective precious metals leaching from a chalcopyrite concentrate using chloride/hypochlorite media. Hydrometallurgy. 2000. Vol. 58, Iss. 3. pp. 185–191.
2. Adams M. D. Gold Ore Processing: Project Development and Operations. 2nd ed. Amsterdam : Elsevier, 2016. 980 p.
3. Yang Y., Liu S., Xu B., Li Q., Jiang T., Lv P. Extraction of Gold from a Low-Grade Double Refractory Gold Ore Using Flotation-Preoxidation-Leaching Process. Rare Metal Technology : Proceedings of a symposium. Cham : Springer, 2 015. pp. 55–62.
4. Sekisov A. G., Khrunina N. P., Prokhorov K. V., Rasskazova A. V. Electric–cavitation pre-oxidation of rebellious gold ore in the heap leaching technology. Zolotodobyvayushchaya promyshlennost. 2017. No. 6(84). pp. 22–24.
5. Aylmore M. G. Alternative lixiviants to cyanide for leaching gold ores. Developments in Mineral Processing. 2005. Vol. 15. pp. 501–539.
6. Samikhov Sh. R., Zinchenko Z. A. Technology of thiosulfate leaching of gold, silver and copper from ore and concentrates of the Taror deposit. Vestnik Tadzhikskogo Natsionalnogo Universiteta. Series: Natural Sciences. 2016. No. 1/2(196). pp. 153–158.
7. Samikhov Sh. R., Zinchenko Z. A. Investigation process of thiosulphate leaching of chore deposit gold arseniccontaining ore. Doklady Akademii nauk Respubliki Tadzhikistan. 2014. Vol. 57, No. 2. pp. 145–150.
8. Korchevenkov S. A. Hydrometallurgical extraction of precious metal fines from placers. State-of-the- Art and Development Prospects of Scientific Ideas : VI International Scientific–Practical Conference Proceedings. Ufa, 2015. Part 2. pp. 217–219.
9. Batkibekova M. B., Djunushalieva T. Sh., Borbieva D. B. The TC-technology of the gold extraction from the refractory goldcontaining ores of the Terekan deposit. Vestnik Kyrgyzsko-Rossiiskogo Slavyanskogo universiteta. 2016. Vol. 16, No. 1. pp. 68–71.
10. Batkibekova M. B., Djunushalieva T. Sh., Borbieva D. B. Тhе метhоd of the thiocarbamide gold extraction from the refractory copper-gold ores of the dolpran deposit (KR). Izvestiya Kyrgyzskogo gosudarstvennogo tekhnicheskogo universiteta im. I. Razzakova. 2016. No. 1(37). pp. 169–172.
11. Dolotov A. S., Udalov Yu. P., Kovalev V. N., Kaplan S. F. Influence of thiocyanate-ion in liquid part of pulp on gold extraction in autoclave treatment of double refractory concentrate of Bakyrchik mining. Bulletin of the Saint Petersburg State Institute of Technology (Technical University). 2017. No. 39(65). pp. 44–48.
12. Lebedev M. P., Larionov V. R., Vasil`eva E. D. Iodine leaching of noble metals as an alternative for the use of cyanides in the conditions of the North. Transactions of the Kola Science Center, Russian Academy of Sciences. 2017. Vol. 8, No. 5, Iss. 1. pp. С. 83–88.
13. Hasab M. G., Raygan S., Rashchi F. Chloride–hypochlorite leaching of gold from a mechanically activated refractory sulfi de concentrate. Hydrometallurgy. 2013. Vol. 138. pp. 59–64.
14. Kharlamova T. A., Alafedov A. F., Bakhir V. M. Enrichment of gold-contaning ore by method of hydrochlorination. Gornyy informatsionno-analiticheskiy byulleten. 2015. No. 3. pp. 108–117.
15. Hasab M. G., Rashichi F., Raygan S. Chloride–hypochlorite oxidation and leaching of refractory sulfide gold concentrate. Physicochemical Problems of Mineral Processing. 2013. Vol. 49(1). pp. 61–70.
16. Nam K. S., Jung B. H., An J. W., Ha T. J., Tran T., Kim M. J. Use of chloride–hypochlorite leachants to recover gold from tailing. International Journal of Mineral Processing. 2008. Vol. 86, Iss. 1–4. pp. 131–140.
17. Fedotov G. P., Blokhin N. N., Khmelevskaja G. A., Zabelskij V. K., Avargin V. A. Compound and method for gold leaching. Patent RF, No. 2093672. Applied: 05.04.1991. Published: 20.10.1997.
18. Sekisov A. G., Mazurkevich S. A.. Method for extracting noble metals from solutions and pulps and reactor for performing the same. Patent RF, No. 2251582. Applied: 07.10.2003. Published: 10.05.2005. Bulletin No. 13.
19. Kozin L. F., Prokopenko V. A., Bogdanova A. K. Kinetics and mechanism of the gold corrosion dissolution in hypochlorite solutions. Protection of Metals and Physical Chemistry of Surfaces. 2005. Vol. 41, Iss. 1. pp. 22–29.

Language of full-text русский
Полный текст статьи Получить
Назад