Инд. авторы: Priyatkina N., Collins W.J., Khudoley A.K., Letnikova E.F., Huang H.-.
Заглавие: The neoproterozoic evolution of the southwestern siberian craton margin: u-pb-hf isotopic records of detrital zircons from the yenisey ridge and the prisayan
Библ. ссылка: Priyatkina N., Collins W.J., Khudoley A.K., Letnikova E.F., Huang H.-. The neoproterozoic evolution of the southwestern siberian craton margin: u-pb-hf isotopic records of detrital zircons from the yenisey ridge and the prisayan // Precambrian Research. - 2018. - Vol.305. - P.197-217. - ISSN 0301-9268.
Идентиф-ры: РИНЦ: 32570138;
Издано: 2018
Физ. хар-ка: с.197-217
Цитирование: 1. Abrajevitch, A., Van der Voo, R., Bazhenov, M.L., Levashova, N.M., McCausland, P.J.A., 2008. The role of the Kazakhstan orocline in the late Paleozoic amalgamation of Eurasia. Tectonophysics 455, 61-76.
2. Bennett, V.C., Brandon, A.D., Nutman, A.P., 2007. Coupled 142Nd-143Nd isotopic evidence for Hadean mantle dynamics. Science 318, 1907-1910.
3. Berezii, A.E., Krus', Z.I., Shevchenko, V.V., 1973. Geological map of the USSR. Scale 1:200,000. Sheet O-47-XIII. Aerogeologiya, Moscow .
4. Bethune, K.M., 2015. The Rae craton of Laurentia/Nuna: a tectonically unique entity providing critical insights into the concept of Precambrian supercontinental cyclicity, American Geophysical Union, Fall Meeting 2015, abstract #T13A-2980.
5. Bezzubtsev, V.V., Perfilova, O.Yu., 2008. Geological Map of Russian Federation. Scale 1: 1 000 000. Sheet N-46 (Abakan). VSEGEI, St.-Petersburg .
6. Bezzubtsev, V.V., Makhlaev, M.L., Kirichenko, V.T., 2008a. Explanatary Note to Geological Map of Russian Federation (sheet N-46 1:1,000,000, Abakan). VSEGEI, St.-Petersburg, pp. 390 .
7. Bezzubtsev, V.V., Makhlaev, M.L., Kirichenko, V.T., Perfilova, O.Yu., Yurkevich, L.G., Markovich, L.A., Zuev, V.K., Rumyantsev, N.N., Datsenko, V.M., Dyatlova, I.N., 2008b. Explanatory Note to the Geological Map of Russian Federation (sheet M-46 1:1,000,000, Kyzyl). VSEGEI, St.-Petersburg, pp. 316 .
8. Blichert-Toft, J., Albarède, F., 2008. Hafnium isotopes in Jack Hills zircons and the for-mation of the Hadean crust. Earth Planet. Sci. Lett. 265, 686-702.
9. Buslov, M.M., Saphonova, I.Y., Watanabe, T., Obut, O.T., Fujiwara, Y., Iwata, K., Semakov, N.N., Sugai, Y., Smirnova, L.V., Kazansky, A.Y., 2001. Evolution of the Paleo-Asian Ocean (Altai-Sayan Region, Central Asia) and collision of possible Gondwana-derived terranes with the southern marginal part of the Siberian con-tinent. Geosci. J. 5, 203-224.
10. Buslov, M.M., Watanabe, T., Saphonova, I.Y., Iwata, K., Travin, A., Akiyama, M., 2002. A Vendian-Cambrian arc system of the Siberian continent in Gorny Altai (Russia, Central Asia). Gondwana Res. 5, 781-800.
11. Buslov, M.M., Geng, H., Travin, A.V., Otgonbaatar, D., Kulikova, A.V., Ming, C., Stijn, G., Semakov, N.N., Rubanova, E.S., Abildaeva, M.A., Voitishek, E.E., Trofimova, D.A., 2013. Tectonics and geodynamics of Gorny Altai and adjacent structures of the Altai-Sayan folded area. Russ. Geol. Geophys. 54, 1250-1271.
12. Cawood, P.A., Strachan, R., Cutts, K., Kinny, P.D., Hand, M., Pisarevsky, S., 2010. Neoproterozoic orogeny along the margin of Rodinia: Valhalla orogen, North Atlantic. Geology 38, 99-102.
13. Cawood, P.A., Strachan, R.A., Pisarevsky, S.A., Gladkochub, D.P., Murphy, J.B., 2016. Linking collisional and accretionary orogens during Rodinia assembly and breAKTp: implications for models of supercontinent cycles. Earth Planet. Sci. Lett. 449, 118-126.
14. Chen, M., Sun, M., Buslov, M.M., Cai, K., Zhao, G., Zheng, J., Rubanova, E.S., Voytishek, E.E., 2015. Neoproterozoic-middle Paleozoic tectono-magmatic evolution of the Gorny Altai terrane, northwest of the Central Asian Orogenic Belt: constraints from detrital zircon U-Pb and Hf-isotope studies. Lithos 233, 223-236.
15. Collins, W.J., Belousova, E.A., Kemp, A.I.S., Murphy, J.B., 2011. Two contrasting Phanerozoic orogenic systems revealed by hafnium isotope data. Nat. Geosci. 4, 333-337.
16. Collins, W.J., 2002. Hot orogens, tectonic switching, and creation of continental crust. Geology 30, 535-538.
17. Dhuime, B., Hawkesworth, C., Cawood, P., 2011. When Continents formed. Science 331, 154-155.
18. Dickinson, W.R., Gehrels, G.E., 2009. Use of U-Pb ages of detrital zircons to infer max-imum depositional ages of strata: a test against a Colorado plateau mesozoic data-base. Earth Planet. Sci. Lett. 288, 115-125.
19. Dobretsov, N.L., Buslov, M.M., 2007. Late Cambrian-Ordovician tectonics and geody-namics of Central Asia. Russ. Geol. Geophys. 48, 71-82.
20. Donskaya, T.V., Gladkochub, D.P., Mazukabzov, A.M., Wingate, M.T.D., 2014. Early Proterozoic postcollisional granitoids of the Biryusa block of the Siberian craton. Russ. Geol. Geophys. 55, 812-823.
21. Ernst, R.E., Hamilton, M.A., Soderlund, U., Hanes, J.A., Gladkochub, D.P., Okrugin, A.V., Kolotilina, T., Mekhonoshin, A.S., Bleeker, W., LeCheminant, A.N., Buchan, K.L., Chamberlain, K.R., Didenko, A.N., 2016. Long-lived connection between southern Siberia and northern Laurentia in the Proterozoic. Nat. Geosci. 9, 464-469.
22. Evans, D.A.D., 2009. The palaeomagnetically viable, long-lived and all-inclusive Rodinia supercontinent reconstruction. Geological Society, London, Special Publications 327, pp. 371-404.
23. Filippov, Y.F., 2017. The Fore-Yenisey sedimentary basin: seismic-geological model and geodynamic history. Russ. Geol. Geophys. 58, 371-383.
24. Galimova, T.F., Pashkova, A.G., 2012. Geological Map of Russian Federation. Scale 1:1,000,000. Sheet N-47 (Nizhneudinsk). VSEGEI, St. Petersburg.
25. Galimova, T.F., Pashkova, A.G., Povarintseva, S.A., Perfiliev, V.V., 2012. Explanatory Note to the State Geological Map of Russian Federation (Sheet N-47, Nizhneudinsk). VSEGEI, St. Petersburg, pp. 653.
26. Geng, Y., Du, L., Ren, L., 2012. Growth and reworking of the early Precambrian con-tinental crust in the North China Craton: constraints from zircon Hf isotopes. Gondwana Res. 21, 517-529.
27. Gladkochub, D., Donskaya, T., Mazukabzov, A., Sklyarov, E., Ponomarchuk, V., Stanevich, A., 2002. The Urik-Iya graben of the Sayan ledge of the Siberian craton: new geochronological data and geodynamic implications. Doklady Rossijskaya Akademiya Nauk 386, 72-77.
28. Gladkochub, D., Donskaya, T., Mazukabzov, A., Sal'nikova, E., Sklyarov, E., Yakovleva, S., 2005. The age and geodynamic interpretation of the Kitoi granitoid complex (southern Siberian craton). Russ. Geol. Geophys. 46, 1121-1133.
29. Gladkochub, D.P., Wingate, M.T.D., Pisarevsky, S.A., Donskaya, T.V., Mazukabzov, A.M., Ponomarchuk, V.A., Stanevich, A.M., 2006. Mafic intrusions in southwestern Siberia and implications for a Neoproterozoic connection with Laurentia. Precambr. Res.147, 260-278.
30. Gladkochub, D.P., Donskaya, T.V., Wingate, M.T.D., Mazukabzov, A.M., Pisarevsky, S.A., Sklyarov, E.V., Stanevich, A.M., 2010a. A one-billion-year gap in the Precambrian history of the southern Siberian Craton and the problem of the Transproterozoic supercontinent. Am. J. Sci. 310, 812-825.
31. Gladkochub, D.P., Pisarevsky, S.A., Donskaya, T.V., Ernst, R.E., Wingate, M.T.D., Söderlund, U., Mazukabzov, A.M., Sklyarov, E.V., Hamilton, M.A., Hanes, J.A., 2010b. Proterozoic mafic magmatism in Siberian craton: an overview and implica-tions for paleocontinental reconstruction. Precambr. Res. 183, 660-668.
32. Glebovitsky, V.A., Khil'tova, V.Y., Kozakov, I.K., 2008. Tectonics of the Siberian Craton: interpretation of geological, geophysical, geochronological, and isotopic geochemical data. Geotectonics 42, 8-20.
33. Glorie, S., De Grave, J., Buslov, M.M., Zhimulev, F.I., Izmer, A., Vandoorne, W., Ryabinin, A., Van den haute, P., Vanhaecke, F., Elburg, M.A., 2011. Formation and Palaeozoic evolution of the Gorny-Altai-Altai-Mongolia suture zone (South Siberia): Zircon U/Pb constraints on the igneous record. Gondwana Res. 20, 465-484.
34. Glorie, S., De Grave, J., Buslov, M.M., Zhimulev, F.I., Safonova, I.Y., 2014. Detrital zircon provenance of early Palaeozoic sediments at the southwestern margin of the Siberian Craton: insights from U-Pb geochronology. J. Asian Earth Sci. 82, 115-123.
35. Goldstein, A., 1987. Use and abuse of crust-formation ages. Geology 15, 893-895. Gorokhov, I.M., Semikhatov, M.A., Baskakov, A.V., Kutyavin, E.P., Mel'nikov, N.N., Sochava, A.V., Turchenko, T.L., 1995. Sr isotopic composition of Vendian and Lower Cambrian carbonate rocks in Siberia. Stratigr. Geol. Correl. 3, 3-33 .
36. Grazhdankin, D.V., Kontorovich, A.E., Kontorovich, V.A., Saraev, S.V., Filippov, Y.F., Efimov, A.S., Karlova, G.A., Kochnev, B.B., Nagovitsin, K.E., Terleev, A.A., Fedyanin, G.O., 2015. Vendian of the Fore-Yenisey sedimentary basin (southeastern West Siberia). Russ. Geol. Geophys. 56, 560-572.
37. Grin W.L., Wang, X., Jackson, S.E., Pearson, N.J., O'Reilly, S.Y., Xu, X., Zhou, X., 2002. Zircon chemistry and magma mixing, SE China: in-situ analysis of Hf isotopes, Tonglu and Pingtan igneous complexes. Lithos 61, 237-269.
38. Hoskin, P.W.O., Schaltegger, U., 2003. The composition of zircon and igneous and me-tamorphic petrogenesis. In: Hanchar, J.M., Hoskin P.W.O., (Eds.), Zircon, pp. 27-62. (Reviews in Mineralogy and Geochemistry, vol. 53).
39. Johansson, Å., 2014. From Rodinia to Gondwana with the ‘SAMBA' model-A distant view from Baltica towards Amazonia and beyond. Precambr. Res. 244, 226-235.
40. Kachevsky, L.K., Zuev, V.K., 2009. Geological Map of Russian Federation. Scale 1:1,000,000. Sheet 0-46. VSEGEI, St. Petersburg.
41. Kalinovsky, A.L., Smolyanets, B.G., 1965. Geological Map of the USSR. Scale 1: 200,000. Sheet N-47-III. VSEGEI, St. Petersburg.
42. Khabarov, E.M., Varaksina, I.V., 2011. The structure and depositional environments of Mesoproterozoic petroliferous carbonate complexes in the western Siberian craton. Russ. Geol. Geophys. 52, 923-944.
43. Kheraskova, T.N., Kaplan, S.A., Galuev, V.I., 2009. Structure of the Siberian platform and its western margin in the Riphean-Early Paleozoic. Geotectonics 43, 115-132.
44. Khudoley, A., Chamberlain, K., Ershova, V., Sears, J., Prokopiev, A., MacLean, J., Kazakova, G., Malyshev, S., Molchanov, A., Kullerud, K., Toro, J., Miller, E., Veselovskiy, R., Li, A., Chipley, D., 2015. Proterozoic supercontinental restorations: constraints from provenance studies of Mesoproterozoic to Cambrian clastic rocks, eastern Siberian Craton. Precambr. Res. 259, 78-94.
45. Kirichenko, V.T., Zuev, V.K., Perfilova, O.Yu., Senovskaya, O.V., Smokitina, I.V., Markovich, L.A., Borodin, V.P., Mironyuk, E.P., 2012. Explanatory Note to Geological Map of Russian Federation (Sheet O-47 in Scale 1: 1 000,000). VSEGEI, St.Petersburg, pp. 470 .
46. Kochnev, B.B., Karlova, G.A., 2010. New data on biostratigraphy of the Vendian Nemakit-Daldynian stage in the southern Siberian platform. Stratigr. Geol. Correl. 18, 492-504.
47. Komarevsky, V.T., Zhukov, N.V., 1964. Geological Map of the USSR. Scale 1: 200 000. Sheet N-47-II. VSEGEI, St. Petersburg .
48. Kovrigina, E.K., Podgornaya, N.S., Guriev, A.G., Semenov, Yu.G., Semerikov, A.A., 1974. Geological Map of the USSR. Scale 1: 1,000,000. Sheet O-46 (47). VSEGEI, St. Petersburg
49. Kozlov, P.S., Likhanov, I.I., Reverdatto, V.V., Zinoviev, S.V., 2012. Tectonometamorphic evolution of the Garevka polymetamorphic complex (Yenisey Ridge). Russ. Geol. Geophys. 53, 1133-1149.
50. Kröner, A., Kovach, V., Belousova, E., Hegner, E., Armstrong, R., DolgopolovaA.,Seltmann, R., Alexeiev, D.V., Homann, J.E., Wong, J., Sun, M., Cai, K., Wang, T., Tong, Y., Wilde, S.A., Degtyarev, K.E., Rytsk, E., 2014. Reassessment of continental growth during the accretionary history of the Central Asian Orogenic Belt. Gondwana Res. 25, 103-125.
51. Kuzmichev, A.B., Larionov, A.N., 2011. The Sarkhoi Group in East Sayan: Neoproterozoic (70-800 Ma) volcanic belt of the Andean type. Russ. Geol. Geophys. 52, 685-700.
52. Kuzmichev, A.B., Sklyarov, E.V., 2016. The Precambrian of Transangaria, Yenisey Ridge (Siberia): Neoproterozoic microcontinent, Grenville-age orogen, or reworked margin of the Siberian craton? J. Asian Earth Sci. 115, 419-441.
53. Kuzmichev, A.B., Paderin, I.P., Antonov, A.V., 2008. Late Riphean Borisikha ophiolite (Yenisey Ridge): U-Pb zircon age and tectonic setting. Russ. Geol. Geophys. 49, 883-893.
54. Letnikova, E.F., Kuznetsov, A.B., Vishnevskaya, I.A., Veshcheva, S.V., Proshenkin, A.I., Geng, H., 2013. The Vendian passive continental margin in the southern Siberian Craton: geochemical and isotopic (Sr, Sm-Nd) evidence and U-Pb dating of detrital zircons by the LA-ICP-MS method. Russ. Geol. Geophys. 54, 1177-1194.
55. Levashova, N.M., Gibsher, A.S., Meert, J.G., 2011. Precambrian microcontinents of the Ural-Mongolian Belt: new paleomagnetic and geochronological data. Geotectonics 45, 51-70.
56. Li, Z.-X., Evans, D.A.D., Halverson, G.P., 2013. Neoproterozoic glaciations in a revised global palaeogeography from the breakup of Rodinia to the assembly of Gondwanaland. Sed. Geol. 294, 219-232.
57. Likhanov, I.I., Reverdatto, V.V., 2014a. Geochemistry, age, and petrogenesis of rocks from the Garevka metamorphic complex, Yenisey Ridge. Geochem. Int. 52, 1-21.
58. Likhanov, I.I., Reverdatto, V.V., 2014b. P-T-t constraints on the metamorphic evolution of the Transangarian Yenisei Ridge: geodynamic and petrological implications. Russ. Geol. Geophys. 55, 299-322.
59. Likhanov, I.I., Reverdatto, V.V., 2015. Evidence of Middle Neoproterozoic extensional tectonic settings along the western margin of the Siberian craton: implications for the breakup of Rodinia. Geochem. Int. 53, 671-689.
60. Likhanov, I.I., Reverdatto, V.V., Kozlov, P.S., Vershinin, A.E., 2011. The Teya poly-metamorphic complex in the Transangarian Yenisei Ridge: an example of meta-morphic superimposed zoning of low-and medium-pressure facies series. Dokl. Earth Sci. 436, 213-218.
61. Likhanov, I.I., Reverdatto, V.V., Kozlov, P.S., 2012. U-Pb and 40Ar/39Ar evidence for Grenvillian activity in the Yenisey Ridge during formation of the Teya metamorphic complex. Geochem. Int. 50, 551-557.
62. Likhanov, I.I., Reverdatto, V.V., Zinov'ev, S.V., Nozhkin, A.D., 2013. Age of blas-tomilonites of the Yenisei regional shear zone as evidence of the Vendian accretionary-collision events at the western margin of the Siberian Craton. Doklady Earth Sci. 450, 489-493.
63. Likhanov, I.I., Nozhkin, A.D., Reverdatto, V.V., Kozlov, P.S., 2014. Grenville tectonic events and evolution of the Yenisei Ridge at the western margin of the Siberian Craton. Geotectonics 48, 371-389.
64. Linnemann, U., Gerdes, A., Hofmann, M., Marko, L., 2014. The Cadomian Orogen: Neoproterozoic to Early Cambrian crustal growth and orogenic zoning along the periphery of the West African Craton-Constraints from U-Pb zircon ages and Hf iso-topes (Schwarzburg Antiform, Germany). Precambr. Res. 244, 236-278.
65. Liu, A.G., Brasier, M.D., Bogolepova, O.K., Raevskaya, E.G., Gubanov, A.P., 2013. First report of a newly discovered Ediacaran biota from the Irkineeva Uplift, East Siberia. Newsl. Stratigr. 46, 95-110.
66. Melnikov, N.V., Yakshin, M.S., Shishkin, B.B., Efimov, A.O., Karlova, G.A., Kilkina, L.I., Konstantinova, L.N., Kochnev, B.B., Kraevskiy, B.G., Melnikov, P.N., Nagovitsin, K.E., Postnikov, A.A., Ryabkova, L.V., Terleev, A.A., Khabarov, E.M., 2005. Stratigraphy of Oil and Gas Basins of SIBERIA. Riphean and Vendian of Siberian Platform and its Plaited Border. Novosibirsk, Geo, pp. 428 .
67. Merdith, A.S., Collins, A.S., Williams, S.E., Pisarevsky, S., Foden, J.F., Archibald, D., Blades, M.L., Alessio, B.L., Armistead, S., Plavsa, D., 2017. A full-plate global re-construction of the Neoproterozoic. Gondwana Res. 50, 84-134.
68. Metelkin, D.V., Blagovidov, V.V., Kazansky, A.Y., 2010. The history of the Karagas Supergroup evolution in the Biryusa region: synthesis of paleomagnetic and sedi-mentological data. Russ. Geol. Geophys. 51, 868-884.
69. Metelkin, D., Ernst, R.E., Hamilton, M., 2011. A ca. 1640 Ma mafic magmatic event in southern Siberia, and links with northern Laurentia, Geological Society of America Annual Meeting (9-12 October 2011), abstract no. 101-1, Minneapolis, USA.
70. Metelkin, D.V., Vernikovsky, V.A., Kazansky, A.Y., 2012. Tectonic evolution of the Siberian paleocontinent from the Neoproterozoic to the Late Mesozoic: paleomag-netic record and reconstructions. Russ. Geol. Geophys. 53, 675-688.
71. Motova, Z.L., Gladkochub, D.P., Donskaya, T.V., Stanevich, A.M., Mazukabzov, A.M., 2013. Age of detrital zircons and lithochemistry of siliciclastic Shangulezh Formation of the Karagas Group, In: Sklyarov, E.V. (Ed.), Proceedings of Meeting «Geodynamic evolution of the Central Asian Orogenic Belt lithosphere (from ocean to continent)». V. 11. Irkutsk, IZK SO RAN, pp. 171-172. .
72. Motova, Z.L., Donskaya, T.V., Gladkochub, D.P., 2016. The composition and re-construction of the source area for the late Precambrian terrigenous rocks of the Oselkovaya series (Biryusa Prisayanie). Geodyn. Tectonophys. (Inst. Earth's Crust RAS) 7 (4), 625-649 .
73. Nozhkin, A., Turkina, O., Bibikova, E., Terleev, A., Khomentovsky, V., 1999. Riphean granite-gneiss domes of the Yenisey Range: geological structure and U-Pb isotopic age. Geol. Geofiz. 40, 1305-1313 .
74. Nozhkin, A., Turkina, O., Bibikova, E., Ponomarchuk, V., 2001. Structure, composition, and formation conditions of metasedimentary-volcanogenic complexes of the Kan greenstone belt: (Northwestern Sayan region). Geologiya i Geofizika 42, 1058-1078 .
75. Nozhkin, A., Bibikova, E., Turkina, O., Ponomarchuk, V., 2003. U-Pb, Ar-Ar, and Sm-Nd isotope-geochronological study of porphyritic subalkalic granites of the Taraka pluton (Yenisey Range). Geologiya i Geofizika 44, 879-889 .
76. Nozhkin, A.D., Turkina, O.M., Sovetov, Y.K., Travin, A.V., 2007. The Vendian accre-tionary event in the southwestern margin of the Siberian Craton. Dokl. Earth Sci. 415, 869-873.
77. Nozhkin, A.D., Turkina, O.M., Bayanova, T.B., Berezhnaya, N.G., Larionov, A.N., Postnikov, A.A., Travin, A.V., Ernst, R.E., 2008. Neoproterozoic rift and within-plate magmatism in the Yenisey Ridge: implications for the breakup of Rodinia. Russ. Geol. Geophys. 49, 503-519.
78. Nozhkin, A.D., Borisenko, A.S., Nevol'ko, P.A., 2011. Stages of Late Proterozoic mag-matism and periods of Au mineralization in the Yenisei Ridge. Russ. Geol. Geophys. 52, 124-143.
79. Nozhkin, A.D., Kachevskii, L.K., Dmitrieva, N.V., 2013. The Late Neoproterozoic rift-related metarhyolite-basalt association of the Glushikha trough (Yenisey Ridge): petrogeochemical composition, age, and formation conditions. Russ. Geol. Geophys. 54, 44-54.
80. Nozhkin, A.D., Popov, N.V., Dmitrieva, N.V., Storozhenko, A.A., Vasil'ev, N.F., 2015a. Neoproterozoic collisional S-type granitoids of the Yenisey Ridge: petrogeochemical composition and U-Pb, Ar-Ar, and Sm-Nd isotope data. Russ. Geol. Geophys. 56, 689-695.
81. Nozhkin, A.D., Turkina, O.M., Dmitrieva, N.V., Likhanov, I.I., 2015b. Age and P-T parameters of metamorphism of metaterrigenous-carbonate deposits of the Derba block (East Sayan). Dokl. Earth Sci. 461, 390-393.
82. Nozhkin, A.D., Turkina, O.M., Likhanov, I.I., Dmitrieva, N.V., 2016. Late Paleoproterozoic volcanic associations in the southwestern Siberian craton (Angara-Kan block). Russ. Geol. Geophys. 57, 247-264.
83. Nozhkin, A.D., 2009. Precambrian of the southwestern Siberian cratonic margin. Izvestiya Tomsk Polytechnic University 314, 5-16 .
84. Ota, T., Utsunomiya, A., Uchio, Y., Isozaki, Y., Buslov, M.M., Ishikawa, A., Maruyama, S., Kitajima, K., Kaneko, Y., Yamamoto, H., Katayama, I., 2007. Geology of the Gorny Altai subduction-accretion complex, southern Siberia: tectonic evolution of an Ediacaran-Cambrian intra-oceanic arc-trench system. J. Asian Earth Sci. 30, 666-695.
85. Pavlov, V.E., Shatsillo, A.V., Petrov, P.Y., 2015. Paleomagnetism of the upper Riphean deposits in the Turukhansk and Olenek uplifts and Uda Pre-Sayan region and the Neoproterozoic drift of the Siberian Platform: Izvestiya. Phys. Solid Earth 51, 716-747.
86. Payne, J.L., McInerney, D.J., Barovich, K.M., Kirkland, C.L., Pearson, N.J., Hand, M., 2016. Strengths and limitations of zircon Lu-Hf and O isotopes in modelling crustal growth. Lithos 248-251, 175-192.
87. Petrov, P.Yu., 2006. Riphean basins of the Turukhansk Uplift of Siberia: origin, geological history and importance of biological component in sedimentary processes.
88. Unpublished Cand. Sc. Thesis Summary. Geological Institute RAS, Moscow, pp. 25 .
89. Pisarevsky, S.A., Natapov, L.M., 2003. Siberia and Rodinia. Tectonophysics 375, 221-245.
90. Pisarevsky, S., Natapov, L.M., Donskaya, T.V., Gladkochub, D.P., Vernikovsky, V.A., Pisarevsky, S., Natapov, L.M., Donskaya, T.V., Gladkochub, D.P., Vernikovsky, V.A., 2008. Proterozoic Siberia: a promontory of Rodinia. Precambr. Res. 160, 66-76.
91. Pisarevsky, S.A., Gladkochub, D.P., Konstantinov, K.M., Mazukabzov, A.M., Stanevich, A.M., Murphy, J.B., Tait, J.A., Donskaya, T.V., Konstantinov, I.K., 2013.
92. Paleomagnetism of Cryogenian Kitoi mafic dykes in South Siberia: implications for Neoproterozoic paleogeography. Precambr. Res. 231, 372-382.
93. Poller, U., Gladkochub, D.P., Donskaya, T.V., Mazukabzov, A.M., Sklyarov, E.V., Todt, W., 2004. Timing of Early Proterozoic magmatism along the Southern margin of the Siberian Craton (Kitoy area). Fifth Hutton Symposium on the Origin of Granites and Related Rocks 389, 215-225.
94. Popov, N.V., Likhanov, I.I., Nozhkin, A.D., 2010. Mesoproterozoic granitoid magmatism in the Trans-Angara segment of the Yenisey Range: U-Pb evidence. Dokl. Earth Sci. 431, 418-423.
95. Postel'nikov, E., 1980. Geosynclinal Evolution of the Yenisey Ridge in the Late Precambrian. Trans. GIN AS USSR, Moscow, pp. 220.
96. Postnikov, A.A., Terleev, A.A., 2004. Neoproterozoic stratigraphy of the Altai-Sayan folded area. Russ. Geol. Geopys. 45 (3), 295-309.
97. Postnikov, A.A., Terleev, A.A., Kuznetsov, A.B., Kozhnev, B.B., Nozhkin, A.D., Stanevich, A.M., 2008. The Vorogovka Group of the Yenisey Ridge (New geological and isotope geochemical data), In Sklyarov, E.V. (Ed.), Proceedings of Meeting «Geodynamic evolution of the Central Asian Orogenic Belt lithosphere (from ocean to continent)».
98. V. 11. Irkutsk, IZK SO RAN, pp. 53-55. .
99. Priyatkina, N., Khudoley, A.K., Collins, W.J., Kuznetsov, N.B., Huang, H.-Q., 2016. Detrital zircon record of Meso-and Neoproterozoic sedimentary basins in northern part of the Siberian Craton: characterizing buried crust of the basement. Precambr. Res. 285, 21-38.
100. Priyatkina, N., Collins, W.J., Khudoley, A.K., Zastrozhnov, D., Ershova, V., Chambarlain, K., Proskurnin, V., Shatsillo, A., 2017. The Proterozoic evolution of northern Siberian Craton margin: a comparison of U-Pb-Hf signatures from sedimentary units of the Taimyr orogenic belt and the Siberian platform. Int. Geol. Rev. 1-27.
101. Rainbird, R.H., Stern, R.A., Khudoley, A.K., Kropachev, A.P., Heaman, L.M., Sukhorukov, V.I., 1998. U-Pb geochronology of Riphean sandstone and gabbro from southeast Siberia and its bearing on the Laurentia-Siberia connection. Earth Planet. Sci. Lett. 164, 409-420.
102. Rasskazchikov, A.N., 1958. Geological Map of the USSR. Scale 1: 200 000. Sheet N-47-VIII. VSEGEI, St. Petersburg .
103. Rojas-Agramonte, Y., Kröner, A., Demoux, A., Xia, X., Wang, W., Donskaya, T., Liu, D., Sun, M., 2011. Detrital and xenocrystic zircon ages from Neoproterozoic to Palaeozoic arc terranes of Mongolia: significance for the origin of crustal fragments in the Central Asian Orogenic Belt. Gondwana Res. 19, 751-763.
104. Romanova, I.V., Vernikovskaya, A.E., Vernikovsky, V.A., Matushkin, N.Y., Larionov, A.N., 2012. Neoproterozoic alkaline magmatism and associated igneous rocks in the wes-tern framing of the Siberian craton: petrography, geochemistry, and geochronology. Russ. Geol. Geophys. 53, 1176-1196.
105. Rosen, O.M., Turkina, O.M., 2007. The oldest Rock assemblages of the Siberian Craton.
106. In: Martin, J. van Kranendonk, Rugh, H.S., Vickie, C.B. (Eds.), Developments in Precambrian Geology. Elsevier, pp. 793-838.
107. Rosen, O., Condie, K.C., Natapov, L.M., Nozhkin, A., 1994. Archean and early Proterozoic evolution of the Siberian craton: a preliminary assessment. Archean Crustal Evol. 11, 411-459.
108. Rudnev, S.N., Matukov, D.I., Sergeev, S.A., Serov, P.A., 2006. Late Riphean plagiogranites of Kuznetskii Alatau: composition, age, and sources. Dokl. Earth Sci. 411, 1277-1283.
109. Rudnev, S.N., Kovach, V.P., Ponomarchuk, V.A., 2013. Vendian-Early Cambrian island-arc plagiogranitoid magmatism in the Altai-Sayan folded area and in the Lake Zone of western Mongolia (geochronological, geochemical, and isotope data). Russ. Geol. Geophys. 54, 1272-1287.
110. Rudnick, R., Gao, S., 2003. Composition of the continental crust. Treatise Geochem. 3, 659.
111. Safonova, I., 2014. The Russian-Kazakh Altai orogen: an overview and main debatable issues. Geosci. Front. 5, 537-552.
112. Sears, J.W., 2012. Transforming Siberia along the Laurussian margin. Geology 40, 535-538.
113. Semikhatov, M.A., Serebryakov, S.N., 1983. Siberian Hypostratotype of Riphean Nauka, Moscow, p. 223. .
114. Shenfil', V.Y., 1991. Upper Precambrian of the Siberian Platform. Nauka, Novosibirsk .
115. Sklyarov, E., Gladkochub, D., Mazukabzov, A., Donskaya, T., Stanevich, A., 2002.
116. Geological complexes in the margin of the Siberian Craton as indicators of the evo-lution of a Neoproterozoic Supercontinent. Russ. J. Earth Sci. 4, 171-186.
117. Smits, R.G., Collins, W.J., Hand, M., Dutch, R., Payne, J., 2014. A Proterozoic Wilson cycle identified by Hf isotopes in central Australia: implications for the assembly of Proterozoic Australia and Rodinia. Geology 42 (3), 231-234.
118. Sovetov, J.K., Blagovidov, V.V., 2004. Reconstruction of a basin evolution: example from a Vendian foredeep, a foreland basin in the southwestern Siberian craton. In: Leonov, Yu.G., Volozh, Yu.A. (Eds.), Sedimentary Basins: Structure, Evolution, and Methods of Studies. Nauchny Mir, Moscow, pp. 159-212 .
119. Sovetov, Y.K., Komlev, D.A., 2005. Tillites at the base of the Oselok Group, foothills of the Sayan Mountains, and the Vendian lower boundary in the Southwestern Siberian platform. Stratigr. Geol. Correl. 13, 337-366.
120. Sovetov, J.K., Kulikova, A.E., Medvedev, M.N., 2007. Sedimentary basins in the south-western Siberian craton: late Neoproterozoic-Early Cambrian rifting and collisional events. Geol. Soc. Am. Spec. Pap. 423, 549-578.
121. Spencer, C.J., Cawood, P.A., Hawkesworth, C.J., Prave, A.R., Roberts, N.M., Horstwood, M.S., Whitehouse, M.J., 2015. Generation and preservation of continental crust in the Grenville Orogeny. Geosci. Front. 6, 357-372.
122. Spencer, C.J., 2016. Hard and fast or soft and slow: rates of crustal reworking and or-ogenesis in the North Atlantic Region. 35th International Geological Congress Abstracts, abstract #1771.
123. Stanevich, A.M., Mazukabzov, A.M., Postnikov, A.A., Nemerov, V.K., Pisarevsky, S.A., Gladkochub, D.P., Donskaya, T.V., Kornilova, T.A., 2007. Northern segment of the Paleoasian Ocean: Neoproterozoic deposition history and geodynamics. Russ. Geol. Geophys. 48, 46-60.
124. Sukhanova, N.V., 1957. Geological Map of the USSR. Scale 1: 200,000. Sheet N-47-IX. VSEGEI, St. Petersburg .
125. Turkina, O.M., Nozhkin, A.D., Bibikova, E.V., Zhuravlev, D.Z., Travin, A.V., 2004. The Arzybei terrane: a fragment of the Mesoproterozoic island-arc crust in the south-western framing of the Siberian craton. Dokl. Earth Sci. 395, 246-250 .
126. Turkina, O.M., Nozhkin, A.D., Bayanova, T.B., 2006. Sources and formation conditions of Early Proterozoic granitoids from the southwestern margin of the Siberian craton. Petrology 14, 262-283.
127. Turkina, O.M., Nozhkin, A.D., Bayanova, T.B., Dmitrieva, N.V., Travin, A.V., 2007.
128. Precambrian terranes in the southwestern framing of the Siberian craton: isotopic provinces, stages of crustal evolution and accretion-collision events. Russ. Geol. Geophys. 48, 61-70.
129. Turkina, O.M., Kapitonov, I.N., Sergeev, S.A., 2013. The isotope composition of Hf in zircon from Paleoarchean plagiogneisses and plagiogranitoids of the Sharyzhalgai uplift (southern Siberian craton): Implications for the continental-crust growth. Russ. Geol. Geophys. 54, 272-282.
130. Varganov, V.A., Moskalev, V.A., Barmin, V.A., 2010. Geological map of Russian Federation. Scale 1: 1,000,000. Sheet P-46. VSEGEI, Petersburg .
131. Vernikovskaya, A.E., Vernikovsky, V.A., Sal'nikova, E.B., Datsenko, V.M., Kotov, A.B., Kovach, V.P., Travin, A.V., Yakovleva, S.Z., 2002. Yeruda and Chirimba granitoids
132. (Yenisey Ridge) as indicators of Neoproterozoic collisions. Geol. Geofiz. 43, 259-272 .
133. Vernikovskaya, A., Vernikovsky, V., Sal'nikova, E., Kotov, A., Kovach, V., Travin, A., Palesskii, S., Yakovleva, S., Yasenev, A., Fedoseenko, A., 2003. Neoproterozoic Postcollisional Granitoids of the Glushikha Complex, Yenisey Range. Petrologija 11, 48-61 .
134. Vernikovskaya, A., Vernikovsky, V., Sal'nikova, E., Yasenev, A., Kotov, A., Kovach, V., Travin, A., Yakovleva, S., Fedoseenko, A., 2006. Neoproterozoic A-type granites of the Garevka massif, Yenisey Ridge: age, sources, and geodynamic setting. Petrology 14, 50-61.
135. Vernikovskaya, A.E., Vernikovsky, V.A., Sal'nikova, E.B., Kotov, A.B., Kovach, V.P., Travin, A.V., Wingate, M.T.D., 2007. A-type leucogranite magmatism in the evolution of continental crust on the western margin of the Siberian craton. Russ. Geol. Geophys. 48, 3-16.
136. Vernikovskaya, A.E., Datsenko, V.M., Vernikovsky, V.A., Matushkin, N.Y., Laevsky, Y.M., Romanova, I.V., Travin, A.V., Voronin, K.V., Lepekhina, E.N., 2013. Magmatism evolution and carbonatite-granite association in the neoproterozoic active con-tinental margin of the Siberian craton: thermochronological reconstructions. Dokl. Earth Sci. 448, 161-167.
137. Vernikovsky, V., Vernikovskaya, A., Sal'nikova, E., Kotov, A., Chernykh, A., Kovach, V., Berezhnaya, N., Yakovleva, S., 1999. New U-Pb data on the formation of the Predivinsk paleoisland-arc complex (Yenisey Ridge). Geol. Geofiz. 255-259 .
138. Vernikovsky, V.A., Vernikovskaya, A.E., Chernykh, A.I., Sal'nikova, E.B., Kotov, A.B., Kovach, V.P., Yakovleva, S.Z., Fedoseenko, A.M., 2001. Porozhnaya granitoids of the Enisei ophiolite belt: indicators of neoproterozoic events on the Enisei ridge. Dokl. Earth Sci. 381, 1043-1046 .
139. Vernikovsky, V.A., Vernikovskaya, A.E., Kotov, A.B., Sal'nikova, E.B., Kovach, V.P., 2003.
140. Neoproterozoic accretionary and collisional events on the western margin of the Siberian craton: new geological and geochronological evidence from the Yenisey Ridge. Tectonophysics 375, 147-168.
141. Vernikovsky, V.A., Vernikovskaya, A.E., Wingate, M.T.D., Popov, N.V., Kovach, V.P., 2007. The 880-864 Ma granites of the Yenisey Ridge, western Siberian margin: geochemistry, SHRIMP geochronology, and tectonic implications. Precambr. Res. 154, 175-191.
142. Vernikovsky, V.A., Vernikovskaya, A.E., Sal'nikova, E.B., Berezhnaya, N.G., Larionov, A.N., Kotov, A.B., Kovach, V.P., Vernikovskaya, I.V., Matushkin, N.Y., Yasenev, A.M., 2008. Late Riphean alkaline magmatism in the western margin of the Siberian Craton: a result of continental rifting or accretionary events? Dokl. Earth Sci. 419, 226-230.
143. Vernikovsky, V.A., Kazansky, A.Y., Matushkin, N.Y., Metelkin, D.V., Sovetov, J.K., 2009. The geodynamic evolution of the folded framing and the western margin of the Siberian craton in the Neoproterozoic: geological, structural, sedimentological, geo-chronological, and paleomagnetic data. Russ. Geol. Geophys. 50, 380-393.
144. Vernikovsky, V.A., Metelkin, D.V., Vernikovskaya, A.E., Matushkin, N.Y., Kazansky, A.Y., Kadilnikov, P.I., Romanova, I.V., Wingate, M.T.D., Larionov, A.N., Rodionov, N.V., 2016. Neoproterozoic tectonic structure of the Yenisey Ridge and formation of the western margin of the Siberian craton based on new geological, paleomagnetic, and geochronological data. Russ. Geol. Geophys. 57, 47-68.
145. Vervoort, J.D., Blichert-Toft, J., 1999. Evolution of the depleted mantle: Hf isotope evi-dence from juvenile rocks through time. Geochim. Cosmochim. Acta 63, 533-556.
146. Volobuev, M.I., Zykov, S.I., Stupnikova, N.I., 1976. Geochronology of Precambrian for-mations of the Sayan-Yenisei region of Siberia. In: Vinogradov, A.P. (Ed.), Topical Problems of the Modern Geochronology. Nauka, Moscow, pp. 96-123 .
147. Yang, J.-H., Wu, F.-Y., Wilde, S., Xie, L.-W., Yang, Y.-H., Liu, X.-M., 2007. Tracing magma mixing in granite genesis: in situ U-Pb dating and Hf-isotope analysis of zircons.
148. Contrib. Mineral. Petrol. 153, 177-190.
149. Zuev, V.K., Perfilova, O.Yu., 2012. Geological Map of Russian Federation. Scale 1:1,000,000. Sheet O-47. VSEGEI, Petersburg .