ISSN (print) 1995-2732
ISSN (online) 2412-9003

 

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DOI: 10.18503/1995-2732-2024-22-2-14-21

Abstract

Relevance. Due to an increase in the consumption of metals and a decrease in the content of useful components in ores, the volume of rock mass extracted from the depths increases rapidly. Overburden and mineralized host rocks of no industrial importance are stored in dumps, whose area continuously increases. It should be noted that when developing deposits of non-ferrous and noble metals, a significant amount of useful components ends up in dumps together with mineralized host rocks and is irretrievably lost. Research shows that in some cases the fine fraction of mineralized host rocks is enriched with a commercial component and has a metal content sufficient for profitable pro-cessing by heap leaching together with low-grade ores. Known technologies for bulldozer dumps do not provide for separating the standard fine fraction. Objective. The study aims at providing a rationale for the resource-saving tech-nology for dump formation, ensuring an increased extraction of commercial components, when developing deposits of non-ferrous and noble metals, as well as reducing the industry-related load on the environment by separating fine frac-tions with the standard content of the commercial component from the mineralized host rocks delivered to the dump, using a modernized spreader. Results. The article proposes the technology for dump formation, which consists in the cyclic transfer of rock mass from a dump truck downhill using the load-carrying body of the modernized spreader and screening a conditioned fine fraction into a storage unit, delivering the resulting fine fraction from the storage facility into a container with a pneumatic transportation system for processing, as well as periodic movement of the spreader and simultaneous leveling of the ridge of the previously dumped layer of rock mass with bulldozer equipment. Conclu-sions. The separation of fine fractions with an enriched commercial component directly during the loading and unload-ing process can significantly reduce dust in dumps, minimize hypergene changes in the standard fine fraction and obtain an additional source of raw materials of the preserved natural quality.

Keywords

dump, heavy-duty dump trucks, mineralized host rocks, grate bars, screen, fine fraction, commercial component, heap leaching

For citation

Cheban A.Yu. Resource-Saving Technology for Dump Formation Using a Modernized Spreader. Vestnik Magnito-gorskogo Gosudarstvennogo Tekhnicheskogo Universiteta im. G.I. Nosova [Vestnik of Nosov Magnitogorsk State Technical University]. 2024, vol. 22, no. 2, pp. 14-21. https://doi.org/10.18503/1995-2732-2024-22-2-14-21

Anton Yu. Cheban – Lead Researcher, Mining Institute of the Khabarovsk Federal Research Center of the Far Eastern Branch of the Russian Academy of Sciences (MI KhFRC FEB RAS), Khabarovsk, Russia. Email: This email address is being protected from spambots. You need JavaScript enabled to view it.

1. Oganesian L.V., Mirlin E.G. Issues of resource deple-tion in Earth crust. Gornaya promyshlennost [Mining Industry]. 2019;(6):100-105. (In Russ.)

2. Baninla Y., Zhang M., Lu Y., Liang R., Zhang Q., Zhou Yu., Khan K. A transitional perspective of glob-al and regional mineral material flows. Resources, Conservation and Recycling. 2019;140:91-101.

3. Robben C., Wotruba H. Sensor-based ore sorting technology in mining – Past, present and future. Min-erals. 2019;9(9):523.

4. Mikhailov B.K., Sedelnikova G.V., Benevolsky B.I., Romanchuk A.I. Innovative technologies for pro-cessing refractory and low-grade gold ores as the basis for rational subsoil use. Rudy i metally [Ores and Metals]. 2014;(1):5-8. (In Russ.)

5. Gorbacheva V.D., Chmykhalova S.V. The quality control of copper-nickel ores of the Talnakh deposit. Gornyi zhurnal [Mining Journal]. 2023;(6):68-72. (In Russ.)

6. Zhang Z.X., Hou D.F., Aladejare A., Ozoji T., Qiao Y. World mineral loss and the possibility to increase ore recovery ratio in mining production. International Journal of Mining Reclamation and Environment. 2021;35(9):670-691.

7. Trubetskoy K.N., Shapar A.G. Malootkhodnye i resursosberegayushchie tekhnologii pri otkrytoy raz-rabotke mestorozhdeniy [Low-waste and resource-saving technologies in open pit mining]. Moscow: Nedra, 1993, 272 p. (In Russ.)

8. Kaplunov D.R., Rylnikova M.V. Development of scientific and methodological foundations for sustainability of the functioning of mining systems in the context of introducing a new technological paradigm. Izvestiya Tulskogo gosudarstvennogo universiteta. Nauki o Zemle [News of Tula State University. Earth Science]. 2020;(4):24-39. (In Russ.)

9. Adams M.D. Gold ore processing: Project develop-ment and operations. 2nd ed. Amsterdam: Elsevier, 2016, 980 p.

10. Robertson S.W., Van Staden P.J., Cherkaev A., Pe-tersen J. Properties governing the flow of solution through crushed ore for heap leaching. Hydrometal-lurgy. 2022;208:1-17.

11. Cheban A.Yu., Sekisov G.V. Rationale for the use of a combined preparation for selective extraction of ores from complex structure deposits. Vestnik Magni-togorskogo gosudarstvennogo tekhnicheskogo universiteta im. G.I. Nosova [Vestnik of Nosov Magnitogorsk State Technical University]. 2020;18(3):4-12. (In Russ.)

12. Sekisov A., Rasskazova A. Assessment of the possi-bility of hydrometallurgical processing of low-grade ores in the oxidation zone of the Malmyzh Cu-Au porphyry deposit. Minerals. 2021;11(1):1-11.

13. Ilankoon I.M.S.K., Tang Y., Ghorbani Y. The current state and future directions of percolation leaching in the Chinese mining industry: Challenges and oppor-tunities. Minerals Engineering. 2018;125:206-222.

14. Snitka N.P., Naimova R.Sh. Areas for the integrated use of industry-realted resources during open pit min-ing of the Muruntau deposit. Gornyi zhurnal [Mining Journal]. 2018;(9):57-61. (In Russ.)

15. Cheban A.Yu., Sekisov A.G. A mining excavator with the capability to separate concentrated ore fines. Vestnik Magnitogorskogo gosudarstvennogo tekhnicheskogo universiteta im. G.I. Nosova [Vestnik of Nosov Magnitogorsk State Technical University]. 2020;18(1):16-22. (In Russ.)

16. Cheban A.Yu. Technology of dumping using an im-proved dump loader. Izvestiya Tulskogo gosudar-stvennogo universiteta. Nauki o Zemle [News of Tula State University. Earth Science]. 2022;(3):210-219. (In Russ.)

17. Anistratov K.Yu. Otkrytye gornye raboty – XXI vek. Spravochnik [Open pit mining – the 21st century. Handbook]. Volume 1. Moscow: LLC Sistema Max-imum, 2019, 640 p. (In Russ.)

18. Molotilov S.G., Norrie V.K., Kortelev O.B., Vlasov V.N. Dump loader for powerful excavator-vehicle complexes of quarries. Izvestiya vuzov. Gornyi zhur-nal [News of the Higher Institutions. Mining Journal]. 2002;(6):25-31. (In Russ.)

19. Levenson S.Ya., Gendlina L.I. Safe dumping equip-ment. Journal of Mining Science. 2014;(50)5:938-942.

20. Kulikova E.G., Morozov A.V. Increasing safety of formation of truck dumps in open pits. Gornyi informatsionno-analiticheskiy byulleten [Mining Informational and Analytical Bulletin]. 2022;(5-2):91-100. (In Russ.)

21. Kantemirov V.D., Titov R.S. Optimization of parame-ters of open pit screening and dumping stations. Izvestiya Uralskogo gosudarstvennogo gornogo uni-versiteta [News of Ural State Mining University]. 2020;(3):107-114. (In Russ.)

22. Masloboev V.A., Seleznev S.G., Makarov V.D., Svet-lov A.V. Assessment of the environmental hazard of storing waste from mining and processing copper-nickel ores. Journal of Mining Science. 2014;50(3):559-572.

23. Noble T.L., Parbhakar-Fox A., Berry R.F., Lottermoser B. Mineral dust emissions at metalliferous mine sites. Environmental Indicators in Metal Mining. Switzerland: Springer Int. Publish., 2017, pp. 281-306.

24. Kuznetsov V.S. Assessment of the influence of waste rock dumps on the state of atmospheric air during open pit mining of iron ore deposits located in the Northern regions. Zapiski gornogo instituta [Journal of the Mining Institute]. 2013;203:182-184. (In Russ.)

25. Sekisov G.V., Cheban A.Yu. Low-waste mining tech-nology for structurally complex deposits with mixed-type process flows of ore extraction and processing. Journal of Mining Science. 2021;57(6):978-985.