L.V. Shumlyanskyy, THE LOCAL SOURCES OF DETRITAL MATERIAL IN MIDDLE DEVONIAN QUARTZITES OF THE DONETS BASIN: RESULTS OF U-Pb LA-ICP-MS ZIRCON DATING
https://doi.org/10.15407/mineraljournal.43.03.085
UDC 551.734.3+4+552.513
THE LOCAL SOURCES OF DETRITAL MATERIAL IN MIDDLE DEVONIAN QUARTZITES OF THE DONETS BASIN: RESULTS OF U-Pb LA-ICP-MS ZIRCON DATING
L.V. Shumlyanskyy, DrSc (Geology), Senior Research Fellow, Leading Researcher
M.P. Semenenko Institute of Geochemistry, Mineralogy and Ore Formation of the NAS of Ukraine
34, Acad. Palladin Ave., Kyiv, Ukraine, 03142
E-mail: lshumlyanskyy@yahoo.com; orcid: 0000-0002-6775-4419
M. Hofmann, PhD (Geology), Head of the Lab. Senckenberg Naturhistorische Sammlungen, Dresden, Germany
E-mail: mandy.hofmann@senckenberg.de; ScopusID: 35334126200
B.V. Borodynya, Head of a party
State Enterprise "Pivdenukrgeologiya"
11, Chernyshevskoho Str., Dnipro, Ukraine, 49005
E-mail: boris.priazov@gmail.com
G.V. Artemenko, DrSc (Geology), Prof. Head of Department
M.P. Semenenko Institute of Geochemistry, Mineralogy and Ore Formation of the NAS of Ukraine
34, Acad. Palladin Ave., Kyiv, Ukraine, 03142
E-mail: regulgeo@gmail.com; orcid: 0000-0002-4528-6853
Language: English
Mineralogical journal 2021, 43 (3): 85-90
Abstract: Results of U-Pb dating of zircons from the Middle Devonian sandstones of the Mykolaivka Suite, taken from the junction zone between the Azov Domain of the Ukrainian Shield and Donets basin, are reported. The rocks are taken from a drill core and they occur beneath a 210 m sequence of mafic and ultramafic volcanic rocks that belong to the Antonivka (D2-3) and Mykolaivka (D2) suites. In total, 28 U-Pb isotope analyses were performed. The predominant population (18 grains) of zircons yielded a concordant age of 2075±9 Ma (MSWD = 0.64). The second largest population consists of zircon crystals with concordant to nearly concordant ages ranging from 3130 to 2830 Ma. These results indicate a local origin for the detrital zircons. The occurrence of coarse-grained terrigenous sediments, derived from local rock sources, indicates significant erosion of the Precambrian basement that might have been caused by differential vertical movements during the Middle Devonian period. In the Donets basin, rifting and uplift started ca. 10 Myr before that of other parts of the Prypyat-Dnieper-Donets Paleorift.
Keywords: Donets basin, detrital zircon, U-Pb age, Devonian.
References:
- Artemenko, G.V., Shumlyansky, L.V. and Bekker, A.Yu. (2018), Geol. Journ., No. 2(363), Kyiv, UA, pp. 42-57 [in Russian]. https://doi.org/10.30836/igs.1025-6814.2018.2.133457
- Bibikova, E.V., Claesson, S., Fedotova, A.A., Artemenko, G.V. and Ilyinsky, L. (2010), Geochem. Intl., Vol. 48, pp. 845-861. https://doi.org/10.1134/S0016702910090016
- Bibikova, E.V., Fedotova, A.A., Claesson, S., Artemenko, G.V. and Anosova, M.O. (2012), Stratigr. Geol. Correl., Vol. 20, pp. 125-138. https://doi.org/10.1134/S0869593812020037
- Bobrov, O.B., Stepanyuk, L.M., Paranko, I.S., Ponomarenko, O.M., Shumlyanskyy, L.V. and Dhuime, B. (2011), Mineral. Journ., Vol. 33, No. 1, Kyiv, UA, pp. 30-40 [in Ukrainian]. https://doi.org/10.15407/mineraljournal
- Cawood, P.A., Hawkesworth, C.J. and Dhuime, B. (2012), Geology, Vol. 40, pp. 875-878. https://doi.org/10.1130/G32945.1
- Chalot-Prat, F., Tikhomirov, P. and Saintot, A. (2007), Journ. Earth Syst. Sci., Vol. 116, pp. 469-495. https://doi.org/10.1007/s12040-007-0045-z
- Claesson, S., Artemenko, G., Bogdanova, S. and Shumlyanskyy, L. (2019), Earth’s oldest rocks, 2nd ed., in Martin J. van Kranendonk, Vickie Bennett, Elis Hoffmann (eds), Elsevier, pp. 837-854. https://doi.org/10.1016/B978-0-444-63901-1.00033-2
- Condie, K.C., Beyer, E., Belousova, E., Griffin, W.L. and O'Reilly, S. (2005), Precam. Res., Vol. 139, pp. 42-100. https://doi.org/10.1016/j.precamres.2005.04.006
- Fedo, C.M., Sircombe, K.N. and Rainbird, R.H. (2003), Rev. Mineral. Geochem., Vol. 53, pp. 277-303. https://doi.org/10.2113/0530277
- Francovschi, I., Grădinaru, E., Li, H., Shumlyanskyy, L. and Ciobotaru, V. (2021), Precam. Res., Vol. 355, 106062. https://doi.org/10.1016/j.precamres.2020.106062
- Gehrels, G. (2014), Ann. Rev. Earth Planet. Sci., Vol. 42, pp. 127-149. https://doi.org/10.1146/annurev-earth-050212-124012
- Gonshakova, V.I., Ruzhitskiy, V.O., Boychuk, M.D., Zaritsky, A.I. and Strekozov, N.E. (1967), Int. Geol. Rev., Vol. 11, pp. 60-73. https://doi.org/10.1080/00206816909475025
- Kusznir, N.J., Stovba, S.M., Stephenson, R.A. and Poplavskii, K.N. (1996), Tectonophys., Vol. 268, pp. 237-255. https://doi.org/10.1016/S0040-1951(96), 00230-2
- Nikishin, A.M., Ziegler, P.A., Stephenson, R.A., Cloetingh, S.A.P.L., Furne, A.V., Fokin, P.A., Ershov, A.V., Bolotov, S.N., Korotaev, M.V., Alekseev, A.S., Gorbachev, V.I., Shipilov, E.V., Lankreijer, A., Bembinova, E.Yu. and Shalimov, I.V. (1996), Tectonophys., Vol. 268, pp. 23-63. https://doi.org/10.1016/S0040-1951(96)00228-4
- Nikishin, A.M., Romanyuk, T.V., Moskovskii, D.V., Kuznetsov, N.B., Kolesnikova, A.A., Dubenskii, A.S., Sheshukov, V.S. and Lyapunov, S.M. (2020), Moscow Univ. Geol. Bull., Vol. 75, pp. 220-236. https://doi.org/10.3103/S0145875220030096
- Paszkowski, M., Budzyń, B., Mazur, S., Sláma, J., Środoń, J., Millar, I.L., Shumlyanskyy, L., Kędzior, A. and Liivamägi, S. (2021), Precam. Res., Vol. 362, 106282. https://doi.org/10.1016/j.precamres.2021.106282
- Sazonova, L.V., Nosova, A.A., Yutkina, E.V., Kondrashov, I.A. and Shumlyanskyy, L.V. (2019), Petrology, Vol. 27, pp. 633-654. https://doi.org/10.1134/S0869591119060055
- Shcherbak, N.P., Artemenko, G.V., Lesnaya, I.M., Ponomarenko, A.N. and Shumlyanskyy, L.V. (2008), Geochronology of the early Precambrian of the Ukrainian Shield. Proterozoic, Nauk. dumka, Kyiv, 240 p. [in Russian].
- Shcherbak, N.P., Artemenko, G.V., Lesnaya, I.M. and Ponomarenko, A.N. (2005), Geochronology of the Early Precambrian of the Ukrainian Shield. Archaean, Nauk. dumka, Kyiv, 244 p. [in Russian].
- Sheremet, E.M., Kryvdik, S.G., Kozar, N.A., Strekozov, S.N., Vovkotrub, N.V., Setaya, L.D., Nikolayev, I.Yu., Agarkova, N.G., Dubyna, A.V., Gatsenko, V.A. and Lunyov, E.S. (2015), Phanerozoic magmatism of the Eastern Azov area of the Ukrainian Shield and related commercial minerals (petrology, geochemistry, and ore potential), Comprint publ., Kyiv, 318 p. [in Russian].
- Shumlyanskyy, L.V. and Shumlyanskyy, V.O. (2014), Modern problems of the lithology of sedimentary basins of Ukraine and neighbouring areas, Abstr. vol. of the Int. conf., 6-11 Octob. 2014, Kyiv, UA, p. 109.
- Shumlyanskyy, L., Hawkesworth, C., Dhuime, B., Billström, K., Claesson, S. and Storey, C. (2015), Precam. Res., Vol. 260, pp. 39-54. https://doi.org/10.1016/j.precamres.2015.01.007
- Stepanyuk, L.M., Shumlyansky, L.V., Hoffmann, A., Hofmann, M., Kovalik, A. and Bekker, A. (2020), Mineral. Journ. (Ukraine), Vol. 42, No. 2, Kyiv, UA, pp. 45-62 [in Ukrainian]. https://doi.org/10.15407/mineraljournal.42.02.046
- Stepanyuk, L.M., Shumlyanskyy, L.V., Ponomarenko, O.M., Dovbush, T.I., Vysotsky, O.B. and Dhuime, B. (2010), Geochem. and ore formation, Vol. 28, Kyiv, UA, pp. 4-10 [in Ukrainian].
- Wilson, M. and Lyashkevich, Z.M. (1996), Tectonophys., Vol. 268, pp. 65-81. https://doi.org/10.1016/S0040-1951(96)00234-X
- Yutkina, E.V., Kononova, V.A., Bogatikov, O.A., Knyazkov, A.P., Kozar, N.A., Ovchinnikova, G.V. and Levsky, L.K. (2004), Petrology, Vol. 12, pp. 134-148.
- Yutkina, E.V., Nosova, A.A., Sazonova, L.V., Larionova, Yu.O., Kondrashov, I.A., Shumlyanskyy, L.V., Albekov, A.Yu. and Savko, K.A. (2017), Petrology, Vol. 25, pp. 241-271. https://doi.org/10.1134/S0869591117020060