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First 230Th/U date of Middle Pleistocene peat bog in Siberia (key section Krivosheino, Western Siberia)


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[1] Arkhipov SA, Zykina VS, Krukover AA, Gnibedenko ZN and Shelkoplyas VN, 1997. Stratigraphy and Paleomagnetizm of Glacial and Loess-Soil deposits on the West-Siberian Plain. Russian Geology and Geophysics 38(6): 165–1085. Search in Google Scholar

[2] Arkhipov SA and Volkova VS, 1994. Geological History, Pleistocene Landscapes and Climate in West Siberia. Novosibirsk: 106 pp (in Russian). Search in Google Scholar

[3] Arslanov KhA, Laukhin SA, Maksimov FE, Kuznetsov VYu, Velichkevich FYu, Sanko AF, Shilova GN and Chernov SB, 2004. The Bedoba Reference section of the Kazantsevo Horizon in Central Sibaria. Doclady Earth Sciences 396(6): 604–607. Search in Google Scholar

[4] Astakhov VI, 2009. The Middle and Late Neopleistocene of the Glacial zone of Western Siberia: problems of stratigraphy and paleogeography. Bull. of Commission for study of the Quaternary 69: 8–24 (in Russian). Search in Google Scholar

[5] Bassinot FE, Laberie LD, Vincent E, Quidelleur X, Shakelton NJ and Lancelot Y, 1994. The astronomical theory of climate and the age of the Brunhes-Matuyama magnetic reversal Earth and Planetary Science Letters 126(1–3): 91–108, DOI 10.1016/0012-821X(94)90244-5. http://dx.doi.org/10.1016/0012-821X(94)90244-510.1016/0012-821X(94)90244-5Search in Google Scholar

[6] Bezrukova EV, Letunova PP, Abzaeva AA, Prokopenko AA, Kulagina NV and Kuzmin MI, 2009. Vegetation and climate of the Lake Baikal catchment area in Late Quaternary comparison of interglacial environments dynamics. In: A.E. Kontorovich ed. Fundamental Problems of Quaternary: Results and Trends of Further Researches. Novosibirsk: 66–68 (in Russian). Search in Google Scholar

[7] Bogdashev VA, Ditrikhs EA, Domnikova EI, Kosticina NM, Mizerov BV and Strizova AI, 1961. Stratigraphical scheme of Quaternary sediments of Ket’-Tym Priobye. Proceeding of meeting on making more precise of Stratigraphical schemes of Western Siberia lowland. Leningrad: 376–388 (in Russian). Search in Google Scholar

[8] Feniksova VV, 1968. History of Development of eastern part of Western Siberia lowland extraglacial zone in Late Cenozoic. Moscow. Moscow State University: 345 pp (in Russian). Search in Google Scholar

[9] Geyh MA, 2001. Reflection on the 230Th/U dating of the dirty material. Geochronometria 20: 9–14. Search in Google Scholar

[10] Grichuk MP, 1957. To Sratigraphy of Quaternary sediments of Western Siberia Lowland south part. Proceeding of meeting on stratigraphy of Siberia. Leningrad: 454–461 (in Russian). Search in Google Scholar

[11] Grichuk MP, 1961. About main trends of Western Siberia lowland south part environment development and stratigraphical breaking into parts of Quaternary sediments. Proceeding of All-Union meeting on Quaternary studying. Moscow. III: 44–57 (in Russian). Search in Google Scholar

[12] Grichuk MP, 1966. Questions of studying of vegetation cover in Siberia in Quaternary time. Quaternary period of Siberia. Moscow: 299–308 (in Russian). Search in Google Scholar

[13] Grichuk MP, 1970. Tomsk section of the Ob’ River. In: V.N. Saks ed. History of the Evolution of the vegetation of extraglacial region in Late Pliocene and Quaternary time. Novosibirsk: 164–194 (in Russian). Search in Google Scholar

[14] Grichuk VP, Zaklinskaya ED and Mizerov BV, 1971. Guide-book of excursion on sections of Cenozoic deposits of Tomsk Priobye. Novosibirsk: 62 pp (in Russian). Search in Google Scholar

[15] Juschus O, Preusser F, Melles M and Radtke U, 2007. Applying SAR-IRSL methodology for dating fine-grained sediments from Lake El’gygytgyn, north-east Siberia. Quaternary Geochronology 2(1–4): 187–194, DOI 10.1016/j.quageo.2006.05.006. http://dx.doi.org/10.1016/j.quageo.2006.05.00610.1016/j.quageo.2006.05.006Search in Google Scholar

[16] Kaufman A and Broecker WS, 1965. Comparison of Th230 and C14 ages for carbonates materials from Lakes Lahontan and Bonneville. Journal of Geophysical Research 70(16): 4030–4042, DOI 10.1029/JZ070i016p04039. http://dx.doi.org/10.1029/JZ070i016p0403910.1029/JZ070i016p04039Search in Google Scholar

[17] Kuzmin MI, Karabanov EB, Bezrukova EV, Bychinskyy AA, Prokopenko AA, Kravchinskyy VA, Gelety VF, Solotchina EP, Khursevich GK, Goreglyad AV and Kraynov MA, 2008. Change of Climate and Environment of Central Asia in Late Cenozoic on base of studying of deep-water bore-holes from Baikal Lake. In: A.P. Derevianko ed. Late Cenozoic Global and Regional Environmental and Climate Changes in Siberia. Novosibirsk: 11–108 (in Russian). Search in Google Scholar

[18] Kuznetsov VYu, 2008. Radiochronology of Quaternary deposits. S-Petersburg State University Press. S-Petersburg. 312 pp (in Russian). Search in Google Scholar

[19] Kuznetsov VYu and Maksimov FE, 2003. New approach to geochronology of interglacial sediments of the Russian plain based on the U-Th dating of buried peat. Doclady Earth Sciences 393(8): 1132–1135. Search in Google Scholar

[20] Laukhin SA, Arslanov KhA, Maksimov FE, Kuznetsov VYu, Shilova GN, Velichkevich FYu, Chernov SB and Nikonorov YaA, 2008a. New Outcrop of Buried Kazantsevo Peat at Lower Reaches of the Irtysh River. Doclady Earth Sciences 418(5): 650–654, DOI 10.1134/S1028334X08020025. Search in Google Scholar

[21] Laukhin SA, Maksimov FE, Arslanov KhA, Kuznetsov VYu, Chernov SB, Shilova GN and Velichkevich FYu, 2008b. Geochronology and Landscape-Climatic Environments of the Early Zyryanian Interstadial in West Siberia. Doclady Earth Sciences 420(5): 683–686, DOI 10.1134/S1028334X08050188. Search in Google Scholar

[22] Maksimov F, Arslanov Kh, Kuznetsov V and Chernov S, 2006. 230Th/U and 14C dating of Upper and Middle Pleistocene Interglacial and Interstadial organic deposits from the East-European Plain and Siberia. In: M. Frechen ed. Pleistocene Environments in Eurasia Chronology, Paleoclimate and Teleconnection. INTAS Final Workshop. Hannover, Geozentrum 2–3 November: 45–49. Search in Google Scholar

[23] Maksimov FE, Kuznetsov VYu, Arslanov KhA and Chernov SB, 2007. Peculiarities 230Th/U dating of Upper- and Middle Pleistocene buried organic sediments. In: Lavrushin YuA, Khoreva IM and Chistiakova IA, eds., Fundamental Problems of Quaternary: Results and Trends of Further Researches. Moscow: 252–256 (in Russian). Search in Google Scholar

[24] Maksimov FE, Laukhin SA, Arslanov KhA, Shilova GN, Kuznetsov VYu, Chernov SB, Zherebtsov IE and Levchenko SB, 2009. Uranium-thorium dating of Middle Pleistocene peat bog in Western Siberia. In: Kontorovich AE, ed., Fundamental Problems of Quaternary: Results and Trends of Further Researches. Novosibirsk: 394–39 (in Russian). Search in Google Scholar

[25] Matrosova TV, 2009. Change of vegetation and climate in North Chukotka of during the last 350 thousand years (on palynological data of sediments from lake El’gygytgyn). Bulletin of North-East Scientific Centre of Far East Branch RAS 2: 23–30 (in Russian). Search in Google Scholar

[26] Mizerov BV, 1957. Stratigraphy of Quaternary deposits of eastern part of Western Siberia lowland. Proceeding of meeting on stratigraphy of Siberia. Leningrad: 435–446 (in Russain). Search in Google Scholar

[27] Mizerov BV, 1961. To materials on correlation Quaternary sediments gacial and non-gracial zones of Western Siberia lowland eastern part. Proceeding of meeting on making more precise of Stratigraphical schemes of Western Siberia lowland. Leningrad: 352–368 (in Russian). Search in Google Scholar

[28] Molodkov AN and Bolikhovskaya NS, 2006. Longterm palaeoenvironmental changes recorded in palynologically studied loesspalaeosol and ESR-dated deposits of Northern Eurasia: Implications for sea-land correlation. Quaternary International 152–153: 48–58, DOI 10.1016/j.quaint.2005.12.001. 10.1016/j.quaint.2005.12.010Search in Google Scholar

[29] Nikitin VP, 1970. Quaternary flora of the West Siberian lowland (seeds). In: Saks VN, ed., History of the Evolution of the vegetation of extraglacial region in Late Pliocene and Quaternary time. Novosibirsk: 245–311 (in Russian). Search in Google Scholar

[30] Strelkov SA, Saks VN, Arkhipov SA and Volkova VS, 1965. The Problems of glacition of the North Siberia. In: V.N. Saks ed. Principal Problems of Study of Quaternary period. Moscow: 188–205 (in Russian). Search in Google Scholar

[31] Strizova AI, 1962. Scheme of Quaternary deposits of Ket’-Tym Priobya. Doclady of Paleobotanic conference. Tomsk. Tomsk State University: 9–11 (in Russian). Search in Google Scholar

[32] Strizova AI and Mizerov BV, 1962. About Interglacial character of samaroviantazovian time. Doclady of Paleobotanic conference. Tomsk. Tomsk State University: 17–21 (in Russian). Search in Google Scholar

[33] Volkova VS, Arkhipov SA, Babushkin AE, Kulkova IA, Guskov SA, Kuzmina OB, Levchuk LK, Mikhailova LV and Sukhorukova SS, 2002. Cenozoic of Western Siberia. Novosibirsk: 247 pp (in Russian). Search in Google Scholar

[34] York D, 1966. Least-squares fitting of a straight line. Canadian Journal of Physics. 44(5): 1079–1086, DOI 10.1139/p66-090. http://dx.doi.org/10.1139/p66-09010.1139/p66-090Search in Google Scholar

[35] Zemtsov AA and Shatskyy SB, 1961. To Geology and Stratigraphy of Quaternary deposits of northerneast part of Western Siberia lowland. Proceeding of All-Union meeting on Quaternary studying. Moscow. III: 32–38 (in Russian). Search in Google Scholar

[36] Zubakov VA, 1974. Enisei’ Siberia. In: Zubakov VA, ed., Geochronology USSR. III Leningrad: 209–229 (in Russian). Search in Google Scholar

[37] Zubakov VA, 1986. Global Climatic Events of Pleistocene. Leningrad: 288 pp (in Russian). Search in Google Scholar

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