References |
1. Krupskaya L. T., Melkonyan R. G., Zvereva V. P., Rastanina N. K., Golubev D. A., Filatova M. Yu. The
danger of waste accumulated by mining enterprises in the Far Eastern Federal District for the environment and
recommendations for reducing the risk of environmental disasters. Mining information and Analytical Bulletin,
no. 12, pp. 102–112, 2018. (In Rus.).
2. Patent No. 2350665 Russian Federation. IPC C22B 3/18 (2006.01). C22B 11/08 (2006.01). Method
of cuvette-heap leaching of metals from mineral mass: No. 2007118333/03 (019956): application 16.05.2007;
publ. 27.03.09. Sekisov A. G., Reznik Yu. N., Zykov N. V., Lavrov A. Yu., Manzyrev D. V., Klimov S. S.,
Korolev V. S., Konareva T. G. (In Rus.).
3. Patent No. 2707459 Russian Federation, IPC C22B 11/00 (2006.01). Method of heap leaching of
gold from technogenic mineral raw materials. No. 2019117482. Application 06.04.2019. Publ. 26.11.2019.
MyazinV. P., Shumilova L. V. Sokolova E. S. (In Rus.).
4. Rasskazov I. Yu., Litvintsev V. S., Mirzekhanov G. S., Banschikova T. S. Priority directions of development
of technogenic complexes of ore-placer deposits // Subsurface use. XXI century, no. 1, pp. 46–55, 2016. (In Rus.).
5. Sekisov A. G., Lavrov A. Yu., Rasskazova A. V. Photochemical and electrochemical processes in
geotechnology. Chita: Transbaikal State University Publ., 2019. (In Rus.).
6. Fazlullin M. I. Heap leaching of precious metals. Moscow: Academy of Mining Sciences, 2001. (In Rus.).
7. Fedotov P. K., Senchenko A. E., Fedotov K. V., Burdonov A. E. Studies of the enrichment of sulfide and
oxidized ores of gold deposits of the Aldan shield. Notes of the Mining Institute, vol. 242, pp. 218–227, 2020.
(In Rus.).
8. Physico-chemical geotechnology. Under the general editorship of V. Zh. Arens. Moscow: Mining Book,
2021. (In Rus.).
9. Shumilova L. V. Scientific substantiation of innovative gold extraction technology (development, testing
in the conditions of Transbaikalia). London: Palmarium Academic Publishing House, 2014. (In Rus.).
10. Yakovlev V. L., Kornilkov S. V., Sokolov I. V. Innovative basis of the strategy of integrated development
of mineral resources. Yekaterinburg: Ural Branch of the Russian Academy of Sciences, 2018. (In Rus.).
11. Yanitsky E. B., Ignatenko I. M. Mining industry of the Belgorod region: science and production. Mining
Journal, no. 7, pp. 44–50, 2020. (In Rus.).
12. Anderson K. G. Kinetics of alkaline sulfide leaching of gold. Mineral engineering, vol. 92, pp. 248–256,
2016. (In Eng.).
13. Bobadilla-Fuzzini R., Perez A. G., Gauthier V., Jordan H., Parada P. Primary biological leaching of
copper sulfides compared with chloride leaching: advantages and disadvantages. Hydrometallurgy, vol. 168,
pp. 26–31, 2017. (In Eng.).
14. Bubnova M. B., Ozaryan Yu. A. Complex assessment of the impact of mining on the environment.
Journal of Mining Sciences, vol. 52, no. 2, pp. 401–409, 2016. (In Eng.).
15. Hatje V., R. M. A. Pedreira, de Resende S. E., Augusto S., Schettini F., de Souza G. S., Marin D. S.,
Hackspacher P. S. Environmental impact of one of the largest tailings dams in the world. Scientific Reports,
vol. 7, pp. 111–117, 2017. DOI: 10.1038/s41598-017-11143-x. (In Eng.).
16. Naumov V. A., Naumova O. B., Osovetsky B. M. Transformation of the gold ore leaching process.
Modern problems of science and education, no. 6, pp. 32–43, 2013. (In Eng.).
17. Rosenfeld S. E., Cheney R. L., Martinez S. E. Soil geochemical factors regulate the accumulation of
Cd by hyperaccumulating metal Noccaea caerulescens (J. Presl & C. Presl) FK Mey in soils polluted in the field.
Science of the environment as a whole, vol. 616, pp. 279–287, 2018. (In Eng.).
18. Velasquez-Yevenes L., Torres D., Toro N. Leaching of agglomerated chalcopyrite ore with a high
concentration of chlorides and long curing periods. Hydrometallurgy, no. 181, pp. 215–220, 2018. (In Eng.). |