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SUBSOIL POTENTIAL OF AZERBAIJAN
Название Space–time and genetic relationships of volcanic gold-bearing sulphide deposits in island-arc zones
DOI 10.17580/gzh.2020.08.04
Автор Abdullaeva Sh. F., Baba-zade V. M., Ismailova N. N.
Информация об авторе

Baku State University, Baku, Azerbaijan:

Sh. F. Abdullaeva, Associate Professor, PhD in Geology and Mineralogy, shakhla.a@gmail.com
V. M. Baba-zade, Head of a Chair, Doctor of Geological and Mineralogical Sciences, Professor, Academician of the National Academy of Sciences of Azerbaijan

 

AzerGold, Baku, Azerbaijan:
N. N. Ismailova, Specialist of Geological Exploration Department

Реферат

The space–time and genetic relationships of volcanic gold-bearing sulphide deposits in the lithogeodynamic systems being segments of ancient geomorphostructures are characterized. It is found that the constituent elements of these litho-geodynamic systems—geologic formations—hold ore bodies formed under the action of endogenetic and exogenetic processes in certain geologic regimes. Metallogenic indicators of litho-geodynamic evolution are noble, nonferrous and rare metals. The dependence of geological structure, mineralogy and geochemistry of the deposits on the formation and evolution of litho-geodynamic systems, the common features in the structure of wallrock envelopes as well as distinctions are detected in the selected metallogenic provinces of the Lesser Caucasus, Eastern Pontic Mountains and South Ural. The Lesser Caucasus and South Ural deposits are definitely united by the indicative homodromic evolution of volcanism, continuous presence of acid rocks inside enclosing formations, as well as by the specific sulfur–pyrite, copper–pyrite and copper–zinc–pyrite types of ore. In the Eastern Pontic Mountains, alkali–calk volcanism is associated with both hydrothermal–sedimentary gold–pyrite–sphalerite–chalcopyrite mineralization and epigenetic fold- and vein-hosted polymetallic-Au–Cu deposits. The similarity of all deposits is illustrated, which is reflective of the common interior processes on the level of primary sources of substance in a wide space of island-arc zones of the Lesser Caucasus, Eastern Pontic Mountains and South Ural. The regular change of the types of mineralization in the cross-section of the Lesser Caucasus, Eastern Pontic Mountains and South Ural, with one or another deviation, is preserved along the whole length of these folded zones.

Ключевые слова Deposit, ore field, ore province, island–arc zone, litho-geodynamic system, formation, volcanism, gold-bearing sulphide, pyrite and copper–porphyry deposits
Библиографический список

1. Baba-zade V. M., Abdullaeva Sh. F. Noble metal ore–magmatic systems. Baku : Izdatelstvo Bakinskogo universiteta, 2012. 276 p.
2. Baba-zade V. M., Kekeliya S. A., Abdullaeva Sh. F., Kekeliya M. A. Gold-bearing sulphide deposits in island–arc paleosystems : Metallogeny features and geodynamic development conditions. Baku : CBS, 2015. 339 p.
3. Kalinin Yu. A., Naumov E. A., Borisenko A. S., Kovalev K. R., Antropova A. I. Spatial-temporal and genetic relationships between gold and antimony mineralization at gold-sulfide deposits of the Ob-Zaisan folded zone. Geology of Ore Deposits. 2015. Vol. 57, No. 3. pp. 157–171.
4. Seravkin I. B., Kosarev A. M. Southern Urals and Rudny Altai: A Comparative Paleovolcanic and Metallogenic Analysis. Geology of Ore Deposits. 2019. Vol. 61, No. 2. pp. 99–117.
5. Goldfarb R. J., Groves D. I., Gardoll S. Orogenic gold and geologic time: a global synthesis. Ore Geology Reviews. 2001. Vol. 18, Iss. 1-2. pp. 1–75.
6. Groves D. I., Goldfarb R. J., Robert F., Hart C. J. R. Gold Deposits in Metamorphic Belts: Overview of Current Understanding, Outstanding Problems, Future Research, and Exploration Significance. Economic Geology. 2003. Vol. 98, No. 1. pp. 1–29.
7. Gugushvili V. I. Pre- and post-collision geodynamics of the Tethys Ocean evolution in correlation with regional metamorphism, volcanism and metallogeny : A case-study of the active Eurasian periphery. Trudy Geologicheskogo instituta im. A. I. Dzhanelidze. Novaya seriya. Tbilisi, 2017. Iss. 129.
8. Gordienko I. V., Badmatsyrenova R. A., Lantseva V. S., Elbaev A. L. Selenga Ore District in Western Transbaikalia: Structural–Minerogenic Zoning, Genetic Types of Ore Deposits, and Geodynamic Settings of Ore Localization. Geology of Ore Deposits. 2019. Vol. 61, No. 5. pp. 391–421.
9. Yarmolyuk V. V., Kozlovsky A. M., Kudryashova E. A., Salnikova E. B., Travin A. V. Riftogenic Magmatism of Western Part of the Early Mesozoic Mongolian–Transbaikalian Igneous Province: Results of Geochronological Studies. Doklady Earth Sciences. 2017. Vol. 475, Iss. 2. pp. 872–876.
10. Moritz R., Melkonyan R., Selby D., Pophkadze N., Gugushvili V. et al. Metallogeny of the Lesser Caucasus: From Arc Construction to Postcollision Evolution. Tectonics and Metallogeny of the Tethyan Orogenic Belt. Special Publication No. 19. Cheyenne, Wyoming : PBR Printing, 2016. pp. 157–192.
11. Sosson M., Rolland Y., Müller C., Danelian T., Melkonyan R. et al. Subductions, obduction and collision in the Lesser Caucasus (Armenia, Azerbaijan, Georgia ), new insights. Sedimentary Basin Tectonics from the Black Sea and Caucasus to the Arabian Platform. Special Publications No. 340. London, 2010. pp. 329–352.
12. Yilmaz A., Adamia Sh., Chabukiani A., Chkhotua T., ErdoĞan K. et al. Structural Correlation of the Southern Transcaucasus (Georgia)-Eastern Pontides (Turkey). Tectonics and Magmatism in Turkey and the Surrounding Area : Special Publication No. 173. London, 2000. pp. 171–182.
13. Shunsō Ishihara. Geology of Kuroko deposits. Tokyo, Japan, 1974. 435 p.
14. Serafimovski T., Volkov A. V., Serafimovski D., Tasev G., Ivanovski I., Murashov K. Yu. Plavica epithermal Au–Ag–Cu deposit in eastern Macedonia: Geology and 3D model of valuable component distribution in ore. Geology of Ore Deposits. 2017. Vol. 59, No. 4. pp. 296–304.
15. Ion A. I., Mariş I. Diagenetical features and microfacies of Mesozoic limestones from Râmeţi Gorges, South Apuseni Mountains, Romania. Earth Science for Energy and Environment : 77th EAGE Conference and Exhibition. Madrid, 2015. DOI: 10.3997/2214-4609.201412481
16. Gugushvili V. I., Beridze T. M. et al. Volcanic and metallogenic indicators of stages in geodynamic development of the active Eurasian periphery and syn-volcanic and post-volcanic blocking : A case-study of Bolnisi ore province. Trudy Geologicheskogo instituta im. A. I. Dzhanelidze. Novaya seriya. Tbilisi, 2018. Iss. 130.
17. Adamia Sh., Chabukiani A., Chkhotua T., Enukidze O., Sadradze N., Zakariadze G. Tethyan evolution and continental collision in Georgia. Tectonic Evolution, Collision, and Seismicity of Southwest Asia: In Honor of Manuel Berberian’s Forty-Five Years of Research Contributions : Speсial Paper 525. Boulder : The Geological Society of America, Inc., 2017. pp. 501–534.
18. Vikentev I. V., Mansurov R. Kh., Ivanova Yu. N., Tyukova E. E., Sobolev I. D. et al. Porphyry-Style Petropavlovskoe Gold Deposit, the Polar Urals: Geological Position, Mineralogy, and Formation Conditions. Geology of Ore Deposits. 2017. Vol. 59, No. 6. pp. 482–520.
19. Kesler S. E., Chryssoulis S. L., Simon G. Gold in porphyry copper deposits: its abundance and fate. Ore Geology Reviews. 2002. Vol. 21, Iss. 1-2. pp. 103–124.
20. Cooke D. R., Hollings P., Walshe J. L. Giant Porphyry Deposits: Characteristics, Distribution, and Tectonic Controls. Economic Geology. 2005. Vol. 100, No. 5. pp. 801–818.
21. Vikentyev I. V., Belogub E. V., Novoselov K. A., Moloshag V. B. Metamorphism of volcanogenic massive sulphide deposits in the Urals. Ore geology. Ore Geology Reviews. 2017. Vol. 85. pp. 30–63.
22. Kovalchyuk E. V., Tagirov B. R., Vikentev I. V., Chareev D. A., Tyukova E. E. et al. “Invisible” Gold in Synthetic and Natural Arsenopyrite Crystals, Vorontsovka Deposit, Northern Urals. Geology of Ore Deposits. 2019. Vol. 61, No. 5. pp. 447–468.
23. Kocharyan A. E. (Ed.). Alaveri–Shamlug–Akhtala ore cluster (science and prediction of ore occurrence). Erevan : Izdatelstvo AN ArmSSR, 1987. 186 p.
24. Shmidt A. I., Minin D. A., Portnoy A. L., Sher L. S . New data on geology, genesis and laws of localization of the Kafan group ore deposits. Transactions (Doklady) of the USSR Academy of Sciences. Earth Science Sections. 1987. Vol. 293, No. 5. pp. 1205–1209.
25. Ratman I. P., Kekeliya S. A., Narozauli I. G. Zonal distribution of molybdenum–copper–porphyry deposits associated with diorite–tonalite–plagiogranit systems : A case-study of the Tekhut deposit in the Armenian Soviet Socialist Republic. Zapiski Vsesoyuznogo mineralogicheskogo obshchestva. 1985. Vol. 114, No. 2. pp. 167–177.
26. Lezhepekov L. G. Natural types and geological–processing features of Cu–pyrite ores of the Madneuli deposit : thesis of inauguration of Dissertation … of Candidate of Geological-Mineralogical Sciences. Tbilisi, 1987. 23 p.
27. Volkov A. V., Prokofev V. Yu., Vinokurov S. F., Andreeva O. V., Kiseleva G. D. et al. Valunistoe Epithermal Au–Ag Deposit (East Chukotka, Russia): Geological Structure, Mineralogical–Geochemical Peculiarities and Mineralization Conditions. Geology of Ore Deposits. 2020. Vol. 62, No. 2. pp. 97–121.
28. Krivtsov A. I., Bogdanov Yu. V., Borodaevskaya M. B., Genkin A. D., Kurbanov N. K. Copper ore deposits—types and generation conditions. Moscow : Nedra, 1987. 194 p.
29. Pshenichnyi G. N. Gai copper–pyrite deposit in the South Ural. Moscow : Nauka, 1975. 187 p.
30. Seravkin I. B., Kosarev A. M., Puchkov V. N. Geodynamic conditions of formation of massive sulfide deposits in the Magnitogorsk Megazone, Southern Urals, and prospection criteria. Geology of Ore Deposits. 2017. Vol. 59, No. 3. pp. 227–243.
31. Eremin N. I. Volcanic sulphide mineralization differentiation : A case-study of the Phanerozoe pyrite deposits. Moscow : Izdatelstvo MGU, 1983. 256 p.

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