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Original Articles

Detrital zircon record of the Mesoproterozoic to Lower Cambrian sequences of NW Russia: implications for the paleogeography of the Baltic interior

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Pages 279-288 | Received 30 Nov 2018, Accepted 25 May 2019, Published online: 30 Sep 2019

References

  • Amelin, Y.A., Larin, A.M., & Tucker, R.D., 1997: Chronology of multiphase emplacement of the Salmi Rapakivi granite anorthosite complex, Baltic shield: implications for magmatic evolution. Contributions to Mineralogy and Petrology 127, 353–368. doi:10.1007/s004100050285
  • Andersson, U. B., Sjöström, H., Högdahl, K. H. O. & Eklund, O., 2004: The Transscandinavian Igneous Belt, evolutionary models. In The Transscandinavian Igneous Belt (TIB) in Sweden: A Review of its Character and Evolution (Högdahl K., Andersson U. B. (eds)). Geological Survey of Finland, Special Paper 37, Espoo, 104–12.
  • Andresen, A., Agyei-Dwarko, N.Y., Kristoffersen, M., & Hanken, N.-M., 2014: A Timanian foreland basin setting for the late Neoproterozoic-Early Palaeozoic cover sequences (Dividal Group) of northeastern Baltica. Geological Society London Special Publications 390,f 157–175. doi:10.1144/SP390.29
  • Bingen, B., Nordgulen, Ø., & Viola, G.A., 2008: Four-phase model for the sveconorwegian orogeny, SW Scandinavia. Norsk Geologisk Tidsskrift 88(1), 43–72.
  • Bogdanova, S.V., Bingen, B., Gorbatschev, R., Kheraskova, T.N., Kozlov, V.I., Puchkov, V.N., & Volozh, Y.A., 2008: The East European Craton (Baltica) before and during the assembly of Rodinia. Precambrian Research 160(1–2), 23–45. doi:10.1016/j.precamres.2007.04.024
  • Brusnitsyna, E.A., Ershova, V.B., Khudoley, A.K., & Andersen, T., 2018: Age and provenance of the Mesoproterozoic-Lower Neoproterozoic strata of the Chetlass Stone (Timan Range): constraints from U-Pb detrital zircon study. Abstract book ICAM 2018, Stockholm, Sweden.
  • Cawood, P.A., Hawkesworth, C., & Dhuime, B., 2012: Detrital zircon record and tectonic setting. Geology 40, 875–878. doi:10.1130/G32945.1
  • Gee, D.G., Andréasson, P.-G., Lorenz, H., Frei, D., & Majka, J., 2015: Detrital zircon signatures of the Baltoscandian margin along the arctic circle caledonides in Sweden: the Sveconorwegian connection. Precambrian Research 265, 40–56. doi:10.1016/j.precamres.2015.05.012
  • Gee, D.G., Beliakova, L., Pease, V., Larionov, A., & Dovshikova, L., 2000: New, single zircon (Pb-evaporation) ages from Vendian intrusions in the basement beneath the Pechora Basin, northeastern Baltica. Polarforschung,Bremerhaven, Alfred Wegener Institute for Polar and Marine Research & German Society of Polar Research 68, 161–170.
  • Gee, D.G., Ladenberger, A., Dahlqvist, P., Majka, J., Be’Eri-Shlevin, Y., Frei, D., & Thomsen, T., 2014: The Baltoscandian margin detrital zircon signatures of the central scandes. Geological Society Special Publication 390(1), 131–155. doi:10.1144/SP390.20
  • Gehrels, G., 2012: Detrital zircon U-Pb geochronology: current methods and new opportunities. In C. Busby & A. Azor (eds.): Tectonics of sedimentary basins: recent advances, chapter 2, 47–62. Blackwell Publishing Ltd., Chichester, UK.
  • Gorbatschev, R., 2004: The Transscandinavian Igneous Belt – introduction and background. In The Transscandinavian Igneous Belt (TIB) in Sweden: A Review of its Character and Evolution (Högdahl K., Andersson U. B. (eds)). Geological Survey of Finland, Special Paper 37, Espoo, 9–15.
  • Isozaki, Y., Poldvere, A., Bauert, H., Nakahata, H., Aokia, K., Sakata, S., & Hirata, T., 2014: Provenance shift in Cambrian mid-Baltica: detrital zircon chronology of Ediacaran-Cambrian sandstones in Estonia. Estonian Journal of Earth Sciences 63, 251–256. doi:10.3176/earth.2014.27
  • Ivleva, A.S., Podkovyrov, V.N., Ershova, V.B., Anfinson, O.A., Khudoley, A.K., Fedorov, P.V., Maslov, A.V., & Zdobin, D.Y., 2016: Results of U–pb LA–ICP–MS dating of detrital zircons from Ediacaran–early Cambrian deposits of the eastern part of the Baltic monoclise. Doklady Earth Sciences 468(2), 593–597. doi:10.1134/S1028334X16060064
  • Ivleva, A.S., Podkovyrov, V.N., Ershova, V.B., Khubanov, V.B., Khudoley, A.K., Sychev, S.N., Vdovina, N.I., & Maslov, A.V., 2018: U–pb LA–ICP–MS age of detrital zircons from the Lower Riphean and Upper Vendian deposits of the Luga–ladoga Monocline. Doklady Earth Sciences 480(2), 695–699. doi:10.1134/S1028334X1806003X
  • Keller, B.M. & Rozanov, Y., 1980: Paleogeography and lithology of Vendian and Cambrian of western part of the East-European platform, 113. NaukaMoscow.
  • Khubanov, V.B., Buyantuev, M.D., & Tsygankov, A.A., 2016: U-Pb dating of zircons from PZ3-MZ igneous complexes of Transbaikalia by sector-field mass spectrometry with laser sampling: technique and comparison with SHRIMP. Russian Geology and Geophysics 57(1), 190–205. doi:10.1016/j.rgg.2016.01.013
  • Korja, A., Lahtinen, R., & Nironen, M., 2006: The Svecofennian orogen: A collage of microcontinents and island arcs. Geological Society Memoir 32, 561–578. doi:10.1144/GSL.MEM.2006.032.01.34
  • Kuptsova, A.V., Khudoley, A.K., Davis, W., Rainbird, R.H., Kovach, V.P., & Zagornaya, N.Y., 2011: Age and provenances of sandstones from the Riphean Priozersk and Salmi formations in the eastern Pasha-Ladoga basin (southern margin of the Baltic Shield). Stratigraphy and Geological Correlation 19(2), 125–140. doi:10.1134/S0869593811020067
  • Kuznetsov, N.B., Natapov, L.M., Belousova, E.A., O’Reilly, S.Y., & Griffin, W.L., 2010: Geochronological, geochemical and isotopic study of detrital zircon suites from late Neoproterozoic clastic strata along the NE Margin of the East European Craton: implications for plate tectonic models. Gondwana Research 17, 583–601. doi:10.1016/j.gr.2009.08.005
  • Kuznetsov, N.B., Soboleva, A.A., Udoratina, O.V., Hertseva, M.V., & Andrelchev, V., 2007: Pre-Ordovician tectonic evolution and volcano–plutonic associations of the Timanides and northern Pre-Uralides, northeast part of the East European Craton. Gondwana Research 12, 305–323. doi:10.1016/j.gr.2006.10.021
  • Lahtinen, R., Korja, A., & Nironen, M., 2005: Paleoproterozoic tectonic evolution. In M. Lehtinen, P.A. Nurmi, & O.T. Ramo (eds.): Precambrian geology of Finland—key to the evolution of the Fennoscandian Shield, 481–532. Elsevier, Amsterdam.
  • Larson, S.Å. & Berglund, J., 1992: A chronological subdivision of the Transscandinavian Igneous Belt – three magmatic episodes? GFF 115, 459–461.
  • Maksimov, A.V., Bogdanov, Y.B., Voinova, O.A., & Kossovaya, O.L., 2015: State geological map of Russia, Scale 1:1000 000, P35-O36, explanatory note, VSEGEI. (in Russian) Saint Petersburg.
  • Miller, E.L., Kuznetsov, N., Soboleva, A., Udoratina, O., Grove, M.J., & Gehrels, G., 2011: Baltica in the Cordillera? Geology 39(8), 791–794. doi:10.1130/G31910.1
  • Nironen, M., 1997: The Svecofennian orogen: a tectonic model. Precambrian Research 86, 21–44. doi:10.1016/S0301-9268(97)00039-9
  • Pease, V., Dovzghikova, E., Beliakova, L., & Gee, D.G., 2004: Late Neoproterozoic granitoid magmatism in the basement to the Pechora Basin, NW Russia: geochemical constraints indicate westward subduction beneath NE Baltica. In D.G. Gee & V. Pease (eds.): The Neoproterozoic Timanide Orogen of Eastern Baltica, Memoirs 30. 75–85. Geological Society, London.
  • Poldvere, A., Isozaki, Y., Bauert, H., Kirs, J., Aoki, K., Sakata, S., & Hirata, T., 2014: Detrital zircon ages of Cambrian and Devonian sandstones from Estonia, central Baltica: a possible link to Avalonia during the Late Neoproterozoic. GFF 136, 214–217. doi:10.1080/11035897.2013.873986
  • Rämö, O.T., Mänttäri, I., Vaasjoki, U.B.G.J., & Sviridenko, L.P., 2001: Age and Significance of Mesoproterozoic CFB Magmatism, Lake Ladoga Region, NW. Russia. In: GSA Annual Meeting. Petrology I, Session 57, A139, Massachusetts, Boston.
  • Rämö, O.T., Turkki, V., Mänttäri, I., Heinonen, A., Larjamo, K.L., & Ahaye, Y., 2014: Age and isotopic fingerprints of some plutonic rocks in the wiborg rapakivi granite batholith with special reference to the dark wiborgite of the ristisaari Island. Bulletin of the Geological Society of Finland 86(2), 71–91. doi:10.17741/bgsf/86.2.002
  • Roberts, N.M.W. & Slagstad, T., 2015: Continental growth and reworking on the edge of the Columbia and Rodinia supercontinents; 1.86-0.9 Ga accretionary orogeny in southwest Fennoscandia (2015). International Geology Review 57(11–12), 1582–1606. doi:10.1080/00206814.2014.958579
  • Slama, J., 2016: Rare late Neoproterozoic detritus in SW Scandinavia as a response to distant tectonic processes. Terra Nova 28(6), 394–401. doi:10.1111/ter.2016.28.issue-6
  • Slama, J. & Pedersen, R.B., 2015: Zircon provenance of SW caledonian phyllites reveals a distant timanian sediment source. Journal of the Geological Society 172(4), 465–478. doi:10.1144/jgs2014-143
  • Verbitskiy, V.R., Verbitskiy, I.V., Vasil’eva, O.V., & Savanin, V.V., 2012: State geological map of Russia, Scale 1:1000 000, O35-O36, explanatory note, VSEGEI, Saint Petersburg. (in Russian).
  • Vermeesch, P., 2012: On the visualisation of detrital age distributions. Chemical Geology 312–313, 190–194. doi:10.1016/j.chemgeo.2012.04.021
  • Zhang, W., Roberts, D., & Pease, V., 2015: Provenance characteristics and regional implications of Neoproterozoic, Timanian-margin successions and a basal Caledonian nappe in northern Norway. Precambrian Research 268, 153–167. doi:10.1016/j.precamres.2015.07.006

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