Журналы →  Gornyi Zhurnal →  2022 →  №4 →  Назад

FROM THE OPERATIONAL EXPERIENCE OF THE MINING COMPANIES AND THE ORGANIZATIONS KHIAGDA JSC
Название Khiagda JSC: Landmarks and achievements
DOI 10.17580/gzh.2022.04.01
Автор Verkhovtsev V. N., Svyatetsky V. S., Mikhailov A. N., Mikhailov A. A.
Информация об авторе

Atomredmetzoloto JSC, Moscow, Russia:

V. N. Verkhovtsev, CEO
V. S. Svyatetsky, First Deputy CEO, Executive Officer, VStSvyatetsky@armz.ru

 

Khiagda JSC, Chita, Moscow:

A. N. Mikhailov, CEO
A. A. Mikhailov, First Deputy CEO

Реферат

The systematic geological exploration launched in the area of the Amalat Plateau of basalts in the Baunt Evenki Region of Buryatia in 1980 resulted in the discovery of Khiagda deposit. Such exogenous epigene (hydrogenous) paleovalley-type deposits in small artesian basins are widely spread on different continents and mostly are mineable using the in-situ leaching (ISL) technology. However, the applicability of ISL to Khiagda deposit raised doubts those days as shallow permafrost groundwater contained in aquiferous ore-bearing strata had very low temperatures (2–4 °C). Some experts at uranium mining technology believed dilution of uranium minerals in sulfuric acid solutions would run extremely slow under such temperatures, and the uranium production by ISL would be inefficient therefore. In the course of commercial-scale development of Khiagda ore field from 2009 up to the present moment, all infrastructure required has been created, including construction of power transmission lines and electric substations, road making, mapping for preparing leaching solutions and collecting pregnant solutions, laying of long-haul pipelines for the continuous circulation of process solutions between the operating sites of ISL, pregnant solution processing plants and local adsorption plants. Khiagda JSC pays particular attention to ESG factors, recognizes the impact the mining activities exert on the environment, life of local communities and on the regional social and economic development, undertakes activities aimed to mitigate such impacts, and strives to ensure long-term and sustainable progression.
The authors appreciate participation of Khaigda’s member D. V. Dyshlyuk and Atomredmetzoloto’s members V. G. Loginova and I. N. Solodov in this article preparation.

Ключевые слова Geological exploration, design, construction, uranium mine, in-situ leaching, intelligent information system, ‘smart’ field
Библиографический список

1. Boyl D. R. Geology and facial features of basalt-type deposit origination in sedimentary rock mass. The 27th International Geological Congress : Headnotes of Papers. Moscow : Nauka, 1984. Vol. IХ, Iss. 1. 336 p.
2. In Situ Leach Uranium Mining: An Overview of Operations. IAEA Nuclear Energy Series NF-T-1.4. Viena : International Atomic Energy Agency, 2016. 60 p.
3. Gaini A. Framing mineral resource governance. 2021. Available at: https://www.iom3.org/resource/framing-mineral-resource-governance.html (accessed: 15.03.2022).
4. Uranium 2018: Resources, Production and Demand: A Joint Report by the NEA and IAEA. Paris : OECD Publishing, 2019. 460 p.
5. Grabovnikov V. A. Geotechnical research in exploration of metals. Moscow : Nedra, 1983. 120 p.
6. Nesterov Yu. V., Petrukhin N. P. Formation and expansion of mineral resources and mineral reserves for the domestic nuclear industry. Moscow, 2017. 402 p.
7. Petrukhin N. P. History of uranium production. Moscow, 2020. 437 p.
8. Svyatetskiy V. S., Polonyankina S. V. Uranium industry in Russia : Current condition and prospects. Uranium : Geology, Resources and Production. V International Symposium Proceedings. Moscow : VIMS, 2021.
9. Mashkovtsev G. A. Prospects of uranium resources and reserves in Russia and modern prospecting technologies. Current Challenges in Uranium Industry : IX International Conference Proceedings. Almaty : Kazakhskiy natsionalnyi universitet, 2019. Vol. 1. pp. 19–22.
10. Avdonin G. I., Saltykov A. S., Prokhorov D. A., Solodov I. N. Development prospects for provable uranium resources in the Vitim Region. Uranium : Geology, Resources and Production. V International Symposium Proceedings. Moscow : VIMS, 2021.
11. Nosyrev G. M., Danileyko V. V., Ezhurov D. O., Pankov A. A., Derbyshev Yu. N. “Turn-key field” systems for extraction panels at deposits of Dalur JSC. Uranium : Geology, Resources and Production. V International Symposium Proceedings. Moscow : VIMS, 2021.
12. Gladyshev A. V., Mikhaylov A. N., Istomin A. D., Noskov M. D., Cheglokov A. A. “Smart ISL field” – optimized real-time control technology. Current Challenges in Uranium Industry : IX International Conference Proceedings. Almaty : Kazakhskiy natsionalnyi universitet, 2019. Vol. 2. pp. 294–300.
13. Noskov M. D., Istomin A. D., Naryshkin R. S., Rudin R. S., Stebakov V. V. et al. Smart in-situ leaching field. Uranium : Geology, Resources and Production. V International Symposium Proceedings. Moscow : VIMS, 2021.
14. Solodov I. N., Kamnev E. N. (Eds.). Uranium Geotechnology (Russian Experience). Moscow : KDU, 2017. 576 p.
15. Noskov M. D. Intelligence control technology for uranium production by in-situ leaching. MINEX Russia : XIV Geological Forum. Moscow, 2018.
16. Noskov M. D., Gladyshev A. V., Gutsul M. V., Kesler A. G., Popova K. E. Use of adaptable borehole patterns in the in-situ leaching of uranium. Uranium : Geology, Resources and Production. V International Symposium Proceedings. Moscow : VIMS, 2021.
17. Noskov M., Solodov I., Kesler A., Terovskaya T. Groundwater contamination and self-purification at uranium production by the in-situ leaching process. Proceedings of the International Symposium on Uranium Raw Material for the Nuclear Fuel Cycle: Exploration, Mining, Production, Supply and Demand, Economics and Environmental Issues (URAM 2018). Vienna : International Atomic Energy Agency, 2018. pp. 307–310.
18. Fazlullin M. I. (ed.). Underground and heap leaching of uranium, gold and other metals. Moscow : ID “Ruda i Metally”, 2005. Vol. 1: Uranium. 407 p.
19. Solodov I. N., Velichkin V. I., Rubtsov M. G., Kuper V. Ya., Chertok M. B. Hydro-geochemical logging : Theory and practice. Moscow : URSS, 2005. 320 p.
20. Hiam-Galvez D., Gerber E., Perkrul J. In situ recovery (ISR)—The permitting challenge. ALTA 2020: Uranium Ore Processing. Perth : ALTA Metallurgical Services, 2020.

Language of full-text русский
Полный текст статьи Получить
Назад