Palaeowind directions and sources of detrital material archived in the Roxolany loess section (southern Ukraine)

Palaeogeography, Palaeoclimatology, Palaeoecology - Tập 496 - Trang 121-135 - 2018
Jerzy Nawrocki1,2, Petro Gozhik3, Maria Łanczont2, Magdalena Pańczyk1, Maryna Komar3,4, Andriy Bogucki5, Ian S. Williams6, Zbigniew Czupyt1
1Polish Geological Institute – NRI, Rakowiecka 4, Warszawa 00-975, Poland
2Maria Curie Skłodowska University, Faculty of Earth Sciences and Spatial Management, Kraśnicka 2cd, Lublin 20-718, Poland
3Institute of Geological Sciences, National Academy of Sciences of Ukraine, O. Gonchar 55-b, Kyiv 01054, Ukraine
4National Museum of Natural History, National Academy of Sciences of Ukraine, Bohdan Khmelnitsky 15, Kyiv 01601, Ukraine
5Faculty of Geography, Lviv University, Petra Doroshenka 41, Lviv 79000, Ukraine
6Research School of Earth Sciences, Australian National University, Canberra, ACT 2601, Australia

Tài liệu tham khảo

Bakhmutov, 2014, Identification of the Matuyama-Brunhes boundary by paleomagnetic studies of the Roxolany profile (Western Black Sea region), Dopov. Nac. akad. nauk Ukr., 10, 92, 10.15407/dopovidi2014.10.092 Bakhmutov, 2017, Rock magnetism and magnetostratigraphy of the loess-sol series of Ukraine (Roksolany, Boyanychi, and Korshev Sections), Izv. Phys. Solid Earth, 53, 65, 10.1134/S1069351317050020 Balintoni, 2014, Peri-Gondwanian terranes in the Romanian Carpathians: a review of their spatial distribution, origin, provenance and evolution, Geosci. Front., 5, 395, 10.1016/j.gsf.2013.09.002 Bateman, 1910, The solution of a system of differential equations occurring in the theory of radioactive transformations, Proc. Camb. Philol. Soc., 15, 423 Black, 2003, TEMORA 1: a new zircon standard for Phanerozoic U-Pb geochronology, Chem. Geol., 200, 155, 10.1016/S0009-2541(03)00165-7 Bogdanova, 2008, The East European Craton (Baltica) before and during the assembly of Rodinia, Precambrian Res., 160, 23, 10.1016/j.precamres.2007.04.024 2013 Bokhorst, 2011, Atmospheric circulation patterns in Central and Eastern Europe during the Weichselian Pleniglacial inferred from loess grain-size records, Quat. Int., 234, 62, 10.1016/j.quaint.2010.07.018 Chepalyga, 1967 Chlebowski, 2003, 7 Chlebowski, 2003, Stratigraphy and sedimentology of the Bug loess (Pleistocene: Upper Vistulian) between Kiev and Odessa (Ukraine), Mar. Geol. Quat. Geol., 47, 261 Claesson, 2006, Archean terranes, Paleoproterozoic reworking, and accretion in the Ukrainian Shield, East European Craton, vol. 32, 645 Comprehensive Atlas of Ukraine, 2004 Dodonov, 2006, Middle-Upper Pleistocene bio-climatic and magnetic records of the Northern Black Sea Coastal Area, Quat. Int., 149, 44, 10.1016/j.quaint.2005.11.017 Ehlers, 2011 Evans, 2003 Faustov, 2009, The Matuyama/Brunhes boundary in loess sections in the south of the East European Plain and their correlation on the basis of palaeomagnetic and palaeopedonic data, Quat. Int., 201, 60, 10.1016/j.quaint.2008.06.014 Fedorowicz, 2012, Challenging K-Ar dating of the Quaternary tephra from Roxolany, Ukraine, Mineralogia, Special Papers, 39, 102 Ge, 2014, Spatial variations in paleowind direction during the last glacial period in north China reconstructed from variations in the anisotropy of magnetic susceptibility of loess deposits, Tectonophysics, 629, 353, 10.1016/j.tecto.2014.07.002 Gendler, 2006, Roxolany and Novaya Etuliya - key sections in the western Black Sea loess area: Magnetostratigraphy, rock magnetism, and paleopedology, Quat. Int., 152–153, 78, 10.1016/j.quaint.2006.01.001 Gozhik, 2013, Loess cover of the Northern Black Sea, 17 Gozhik, 1995, 65 Gozhik, 2006, The Pleistocene stratigraphy and palaeogeography of the Roksolany, Odessa Region, Ukraine, 11 Gozhik, 2007, The key section of Neopleistocene subaerial deposits near Roxolany village (Odessa region), Institute of Geological Sciences of NAS of Ukraine, 109 Guidebook for Excursions A-7, C-7, 1982 Haase, 2007, Loess in Europe – its spatial distribution based on a European Loess Map, scale 1:2 500 000, Quat. Sci. Rev., 26, 1301, 10.1016/j.quascirev.2007.02.003 Hus, 2003, The magnetic fabric of some loess/palaeosol deposits, Phys. Chem. Earth, 28, 689, 10.1016/S1474-7065(03)00128-1 Jelinek, 1978, Statistical processing of magnetic susceptibility measured in groups of specimens, Stud. Geophys. Geod., 22, 50, 10.1007/BF01613632 Jelinek, 1981, Characterization of magnetic fabrics of rocks, Tectonophysics, 79, 63, 10.1016/0040-1951(81)90110-4 Johansson, 2006, A revised geochronology for the Blekinge Province, southern Sweden, GFF, 128, 287, 10.1080/11035890601284287 Karátson, 2016, The latest explosive eruptions of Ciomadul (Csomád) volcano, East Carpathians - a tephrostratigraphic approach for the 52–29 ka BP time interval, J. Volcanol. Geotherm. Res., 319, 29, 10.1016/j.jvolgeores.2016.03.005 Kohut, 2008, Geochemistry and U-Pb detrital zircon ages of metasedimentary rocks of the Lower Unit, Western Tatra Mountains (Slovakia), Acta Geol. Pol., 58, 371 Konikov, 2007, Sea-level fluctuations and coastline migration in the northwestern Black Sea area over the last 18 ka based on high-resolution lithological-genetic analysis of sediment architecture, 405 Lahtinen, 2005, Paleoproterozoic tectonic evolution, 481 2015 Łanczont, 2015, Abiotic environment of the Palaeolithic oecumene in the peri- and meta-Carpathian zone, 55 Langroix, 2002, Paleowind directins from the magnetic fabric of loess profiles in central Alska, Earth Planet. Sci. Lett., 195, 99, 10.1016/S0012-821X(01)00564-7 Langroix, 2004, The regional and temporal significance of primary aeolian magnetic fabrics preserved in Alaskan loess, Earth Planet. Sci. Lett., 225, 379, 10.1016/j.epsl.2004.07.003 Li, 2017, Geochemical and zircon isotopic evidence for extensive high level crustal contamination in Miocene to mid-Pleistocene intraplate volcanic rocks from the Tengchong field, western Yunnan, China, Lithos, 286-287, 227, 10.1016/j.lithos.2017.06.015 Liu, 2012, High-resolution anisotropy of magnetic susceptibility record in the central Chinese Loess Plateau and its paleoenvironment implications, Sci. China Earth Sci., 55, 488, 10.1007/s11430-011-4354-3 Liu, 1985 Ludwig, 2000, SQUID 1.00 Ludwig, 2003, 1 Nawrocki, 2006, Development of Trans-European Suture Zone in Poland: from Ediacaran rifting to Early Palaeozoic accretion, Mar. Geol. Quat. Geol., 50, 59 Nawrocki, 2006, Palaeowind directions recorded in the youngest less in Poland and western Ukraine as derived from anisotropy of magnetic susceptibility measurements, Boreas, 35, 266, 10.1080/03009480600584907 Panin, 2007, The Black Sea – geology, environment and archaeology, 3 Pécskay, 1995, K-Ar datings of the Neogene-Quaternary calc-alkaline volcanic rocks in Romania, vol. 7, 53 Pilipenko, 2007, Direction and relative paleointensity of the geomagnetic field in the middle and later Pleistocene from paleomagnetic data of the Roxolany section (Ukraine), Izv. Phys. Solid Earth, 43, 10.1134/S1069351307050084 Putievoditel, 1976 Putivnyk, 2000 Sartori, 2000, The Quaternary climate in loess sediments: Evidence from rock and mineral magnetic and geochemical analysis Simakova, 2002, New pollen records from the key section Roxolany (Southwestwern Russian Plain) and its correlation with Central Asia data Steiger, 1977, Subcommission on geochronology: convention on the use of decay constants in geo- and cosmochronology, Earth Planet. Sci. Lett., 36, 359, 10.1016/0012-821X(77)90060-7 Szakács, 2015, Eruptive history of a low frequency and low-output rate Pleistocene volcano, Ciomadul, South Harghita Mts., Romania, Bull. Volcanol., 77, 1 Tarling, 1993 Thistlewood, 1991, A palaeomagnetic and mineral magnetic study of the loess sequence at Liujiapo, Xian, China, J. Quat. Sci., 6, 13, 10.1002/jqs.3390060104 Tsatskin, 1998, Pedosedimentary division, rock magnetism and chronology of the loess/palaesol sequence at Roxolany (Ukraine), Palaeogeogr. Palaeoclimatol. Palaeoecol., 143, 111, 10.1016/S0031-0182(98)00073-X Tsatskin, 2001, A new scheme of terrestrial paleoclimate evolution during the last 1.5 Ma in the western Black Sea region: integration of soil studies and loess magmatism, Phys. Chem. Earth, 26, 911, 10.1016/S1464-1895(01)00141-7 Veklich, 1993 Vozárová, 2013, Pb ages of detrital zircons in relation to geodynamic evolution: Paleozoic of the Northern Gemericum (Western Carpathians, Slovakia), J. Sediment. Res., 83, 915, 10.2110/jsr.2013.66 Wang, 2010, Subaerial and subaqueous deposition of loess: experimental assessment of detrital remanent magnetization in Chinese loess, Earth Planet. Sci. Lett., 298, 394, 10.1016/j.epsl.2010.08.019 Williams, 1998, U-Th-Pb geochronology by ion microprobe, vol. 7, 1 Williams, 1987, Isotopic evidence for the Precambrian provenance and Caledonian metamorphism of high grade paragneisses from the Seve Nappes, Scandinavian Caledonides: II ion microprobe zircon U-Th-Pb, Contrib. Mineral. Petrol., 97, 205, 10.1007/BF00371240 Williams, 2016, The deficiencies and excesses of the very young, 86 Wulf, 2016, The ‘Roxolany Tephra’ (Ukraine) – new evidence for an origin from Ciomadul volcano, East Carpathians, J. Quat. Sci., 31, 565, 10.1002/jqs.2879 Zhang, 2010, Paleomonsoon route reconstruction along a W-E transect in the Chinese Loess Plateau using the anisotropy of magnetic susceptibility: summer monsoon model, Earth Planet. Sci. Lett., 299, 436, 10.1016/j.epsl.2010.09.026 Zhu, 2004, Paleoenvironmental significance of the magnetic fabrics in Chinese loess-paleosols since the last interglacial (<130 ka), Earth Planet. Sci. Lett., 221, 55, 10.1016/S0012-821X(04)00103-7