Peculiarities of the formation of the Zhailma volcano-tectonic deep
- Details
- Category: Content №1 2023
- Last Updated on 25 February 2023
- Published on 30 November -0001
- Hits: 3017
Authors:
E.G.Malchenko, orcid.org/0000-0001-5525-4962, CenterKazNedra, Karaganda, the Republic of Kazakhstan
A.T.Roman*, orcid.org/0000-0003-3489-9475, PLLCB KMG Kashagan B. V., Astana, the Republic of Kazakhstan, e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it.
V.S.Portnov, orcid.org/0000-0002-4940-3156, Karaganda Technical University, Karaganda, the Republic of Kazakhstan
N.S.Askarova, orcid.org/0000-0002-2103-6198, Karaganda Technical University, Karaganda, the Republic of Kazakhstan
* Corresponding author e-mail: This email address is being protected from spambots. You need JavaScript enabled to view it.
Naukovyi Visnyk Natsionalnoho Hirnychoho Universytetu. 2023, (1): 026 - 031
https://doi.org/10.33271/nvngu/2023-1/026
Abstract:
Purpose. Studying the features of the Zhailma volcano-tectonic depression formation, as well as the principles and factors affecting this structure’s ore formation.
Methodology. Analysis of the results of isotope dating of rocks, critical analysis of literature and fund materials, analysis of the genesis and specificity of the Zhailma structure mineralization, features of the volcano-tectonic depression formation.
Findings. The Zhailma graben syncline formation is associated with subsidence after ejections of significant masses of acidic magmatic material from stratovolcanoes concentrated on the Zhailma structure. The initiation and development of the graben-syncline is closely related to the processes of tectonomagmatic evolution of the Devonian volcano-plutonic belt.
Originality. The search model for stratiform deposits of the Atasu type has been revised, taking into account the original theory of the volcano-tectonic origin of the structure, formed at the final stages of the formation and development of the Devonian volcano-plutonic belt. The genesis of the Atasu-type deposits is considered as sedimentary-hydrothermal one, associated with the processes of diagenesis and catagenesis occurring within sedimentary basins. The presence of two large volcanoes on the northern side of the caldera structure was substantiated: North Zhairem and Ustanynzhal.
Practical value. It is recommended to carry out predictive metallogenic and, accordingly, prospecting work for deposits of the Atasu type within the graben-synclines of the Sarysu-Teniz segment of the Devonian volcanic belt, where such deposits of ferromanganese ores as Tur, Bogach and Karaadyr are already being developed in the Aydagarly graben-syncline.
Keywords: volcanic graben syncline, isotopic analysis, Devonian volcano-plutonic belt, Atasu ore district, continental rifts
References.
1. State geological map of the Atasui ore region. Explanatory note. (1991).
2. Shcherba, G. N. (1964). Some features of the study of deposits of the Atasu type. Izvestiia AN Kaz.SSR, series Geology, (5), 15-33.
3. Geology and metallogeny of the Uspenskaya tectonic zone. (Vol. 6). (1967, 1968). Alma-Ata.
4. Borsuk, B. I., & Yagovkin, V. I. (1972). Atasu-Uspen sky synclinorium. Book Geology of the USSR, volume XX. Central Kazakhstan. Retrieved from https://www.geokniga.org/bookfiles/geokniga-geologiya-sssr-tom-20-geologicheskoe-opisanie-kniga-1-centralnyy-kazahstan-a.pdf.
5. Lyubetsky, V. N., Lyubetskaya, L. D., & Shabalina, L. V. (2009). Deep structure and stages of formation of industrial stratiform polymetallic ores in the Atasu and Ore-Altai ore districts. Izvestiia NAN RK. Serii Geololy, (5), 24-36.
6. Lapteva, E. M., & Lapteva, N. I. (2008). Graphical representation of the geodynamics of rift structures based on remote data. Modern problems of remote sensing of the Earth from space, 356-362.
7. Shabalina, L. V. (2003). Model of the deep structure of the Central Kazakhstan paleorift system. Proceedings of the National Academy of Sciences of the Republic of Kazakhstan. Geology Series, (4), 16-23.
8. Shenger A. M. Jelal (2009). Rifts of the world. Moscow: Geokart.
9. Mazurov, A. K. (2002). Features of metallogeny and assessment of ore-bearing capacity of metallogenic complexes of rifts of Kazakhstan. Rifts of the lithosphere: Proceedings of the international. scientific Conference, 244-248. Retrieved from www.elibrary.ru/item.asp?id=25329023.
10. Dolginov, E. A., & Bashkin, Yu. V. (2013). Patterns of continental rifting. Bulletin of the Moscow Society of Naturalists. Department of Geology, 88(4), 55-63.
11. Logachev, N. A. (2001). Main structural features and geodynamics of the Baikal rift zone. Physical mesomechanics, 2(1-2), 163-170.
12. Kurchavov, A. M., & Khamzin, B. S. (2017). The main boundaries of ore formation in the orogenic structures of the Caledonides of Northern and Central Kazakhstan. Izvestiia NAS RK. Series geology and technical sciences, (3), 24-34. ISSN 2224-5278.
13. Zhukovsky, V. I., Malchenko, E. G., & Khamzin, B. S. (2008). Polymetal and iron-manganese deposits of Central Kazakhstan (Atasuy type). Ore provinces of Central Asia, (pp. 149-160). Almaty.
14. Seitmuratova, E. Yu., Arshamov, Ya. K., Baratov, R. T., & Dautbekov, D. O. (2017). Geological and metallogenic features of the volcano-plutonic belts of Kazakhstan. Proceedings of the National Academy of Sciences of the Republic of Kazakhstan, 3(416), 60-86.
15. Patalakha, G. I., Shuzhanov, V. M., & Berikbolov, B. R. (1989). Origin of marginal volcano-plutonic belts. Izvestiia AN Kaz.SSR, series, (4), 3-9.
16. Ehrlich, E. (2020). Geodynamics and magmatism of platforms. Litres. Retrieved from https://www.geokniga.org/bookfiles/geokniga-geodinamika-i-magmatizm-platform.pdf.
17. Antonyuk, R. M., Ismailov, Kh. K., Klochkov, M. V., Kochergina, A. V., & Kuznetsov, K. V. (2012). Regularities of localization of deposits of the Atasu type in the rift structures of Central Kazakhstan of the Late Devonian–Early Carboniferous age. Geology and protection of mineral resources, 2(43), 11-21.
18. Malchenko, E. G., Roman, А. Т., Portnov, V. S., & Askarova, N. S. (2022). On the possible role of magmatism in the formation of atasu type strathiform mineralization (Central Kazakhstan). Naukovyi Visnyk, Natsionalnoho Hirnychoho Universytetu, (2), 11-16. https://doi.org/10.33271/nvngu/2022-2/011.
19. Roman, А. Т., Portnov, V. S., & Askarova, N. S. (2022). Tectonic peculiarities of the Zhailma structure formation. Naukovyi Visnyk, Natsionalnoho Hirnychoho Universytetu, (3), 11-16. https://doi.org/10.33271/nvngu/2022-3/011.
Newer news items:
- Load of a semi-car having the dismountable roof of composites - 25/02/2023 01:06
- Analysis of surface settlements induced by tunnel excavation with EPB-TBM - 25/02/2023 01:06
- Features of modernization of a truck with a hybrid power transmission - 25/02/2023 01:05
- Geometry variation of ballasted railway tracks due to weather conditions - 25/02/2023 01:05
- Graphitizing modification of the axial zone of cast iron rolling rolls in the liquidus-solidus temperature range - 25/02/2023 01:05
- Reverse flotation process in double stage on the Algerian phosphate ore treatment - 25/02/2023 01:05
- Modeling of drilling water supply wells with airlift reverse flush agent circulation - 25/02/2023 01:05
- Geomechanical substantiation of parameters for safe completion of mining the coal reserves adjacent to main workings - 25/02/2023 01:05
- Pressure distribution in the oil reservoir in a two-dimensional plane - 25/02/2023 01:05
- Predicting underground mining impact on the earth’s surface - 25/02/2023 01:05
Older news items:
- Algorithm for the formation of price lists for raw amber taking into account individual consumer characteristics - 25/02/2023 01:05
- Lithium and gold content in salt domes and saline lands of Western and Southern Kazakhstan - 25/02/2023 01:05
- Method for determining the ultimate sorption capacity of coal matter by EPR-spectroscopy - 25/02/2023 01:05