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Addendum to the chemostratigraphy of the uppermost Callovian–middle Oxfordian interval of the Tethyan Fatricum domain (Tatra Mts, Krížna Nappe, southern Poland)

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
New isotope (δ13C, δ18O of bulk carbonates) and carbonate content data from the uppermost Callovian–middle Oxfordian radiolarites of the Fatricum domain belonging to the north-western segment of the Tethys are added to previously published data. The new data supplement the Długa Valley section, the most nearly complete Bajocian–lower Tithonian section of the Krížna Nappe in the Tatra Mts. The uppermost Callovian and Lower Oxfordian bulk δ13C values (from 3.1 to 3.3‰) remain nearly constant with highly positive values. Therefore, the positive excursion identified in bulk carbonate δ13C values is interpreted as a record of the upper Callovian–middle Oxfordian global phenomenon. In this interval, a significant increase of CaCO3 content is recorded, which accompanies facies change from ribbon radiolarites with siliceous shale partings to calcareous radiolarites with rare shale intercalations. The abrupt CaCO3 increase may reflect a turning point in Early Oxfordian carbonate production and recovery of the marine carbonate factory.
Rocznik
Strony
419--425
Opis fizyczny
Bibliogr. 28 poz., fot., rys., wykr.
Twórcy
autor
  • Institute of Geological Sciences, Jagiellonian University, Gronostajowa 3a, 30-387 Kraków, Poland
Bibliografia
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  • 2. Arabas, A., 2016. Middle-Upper Jurassic stable isotope records and seawater temperature variations: New palaeoclimate data from marine carbonate and belemnite rostra (Pieniny Klippen Belt, Carpathians). Palaeogeography, Palaeoclimatology, Palaeoecology, 446: 284-294.
  • 3. Bac-Moszaszwili, M., Burchart, J., Głazek, J., Iwanow, A., Jaroszewski, W., Kotański, Z., Lefeld, J., Mastella, L., Ozimkowski, W., Roniewicz, P., Skupiński, A. & Westwalewicz-Mogilska, E., 1979. Geological Map of the Polish Tatra Mountains 1:30 000. Wydawnictwa Geologiczne, Warszawa.
  • 4. Bartolini, A., Baumgartner, P. O. & Guex, J., 1999. Middle and Late Jurassic radiolarian palaeoecology versus carbon-isotope stratigraphy. Palaeogeography, Palaeoclimatology, Palaeoecology, 145: 43-60.
  • 5. Baumgartner, P. O., 2013. Mesozoic radiolarites - Accumulation as a function of sea surface fertility on Tethyan margins and in ocean basins. Sedimentology, 60: 292-318.
  • 6. Carmeille, M., Bourillot, R., Brunet, M.-F., Pellenard, P., Fürsich, F. T., Schnyder, J., Barrier, E., Blanpied, C. & Sidorova, I., 2018. Architecture and sedimentary evolution of the southwestern Gissar carbonate platform (Uzbekistan) during the Middle-Late Jurassic. Marine and Petroleum Geology, 97: 437-465.
  • 7. Cecca, F., Savary, B., Bartolini, A., Remane, J. & Cordey, F., 2001. The Middle Jurassic - Lower Cretaceous Rosso Ammonitico succession of Monte Inici (Trapanese domain, western Sicily): sedimentology, biostratigraphy and isotope stratigraphy. Bulletin de la Société Géologique de France, 172: 647-659.
  • 8. Coimbra, R., Immenhauser, A., Olóriz, F., Rodríguez-Galiano, V. & Chica-Olmo, M., 2014. New insights into geochemical behaviour in ancient marine carbonates (Upper Jurassic Ammonitico Rosso): Novel proxies for interpreting sea-level dynamics and palaeoceanography. Sedimentology, 62: 266-302.
  • 9. Jach, R., Djerić, N., Goričan, Š. & Reháková, D., 2014. Integrated stratigraphy of the Middle Upper Jurassic of the Krížna Nappe, Tatra Mountains. Annales Societatis Geologorum Poloniae, 84: 1-33.
  • 10. Jach, R. & Reháková, D., 2019. Middle to Late Jurassic carbonate-biosiliceous sedimentation and palaeoenvironment in the Tethyan Fatricum Domain, Krížna Nappe, Tatra Mts, Western Carpathians. Annales Societatis Geologorum Poloniae, 89: 1-46.
  • 11. Jenkyns, H. C., Jones, C., Gröcke, D. R., Hesselbo, S. P. & Parkinson, D. N., 2002. Chemostratigraphy of the Jurassic System: applications, limitations and implications for palaeoceanography. Journal of the Geological Society, 159: 351-378.
  • 12. Katz, M., Wright, J. D., Miller, K. G., Cramer, B. S., Fennel, K. & Falkowski, P. G., 2005. Biological overprint of the geological carbon cycle. Marine Geology, 217: 323-338.
  • 13. Lavastre, V., Ader, M., Buschaert, S., Petit, E. & Javoy, M., 2011. Water circulation control on carbonate-S18O records in a low permeability clay formation and surrounding limestones: the Upper Dogger-Oxfordian sequence from the eastern Paris basin, France. Applied Geochemistry, 26: 818-827.
  • 14. Lefeld, J., Gaździcki, A., Iwanow, A., Krajewski, K. & Wójcik, K., 1985. Jurassic and Cretaceous lithostratigraphic units in the Tatra Mts. Studia Geologica Polonica, 84: 7-93.
  • 15. Louis-Schmid, B., Rais, P., Bernasconi, S. M., Pellenard, P., Collin, P.-Y. & Weissert, H., 2007. Detailed record of the mid-Oxfordian (Late Jurassic) positive carbon-isotope excursion in two hemipelagic section (France and Switzerland): a plate tectonic trigger? Palaeogeography, Palaeoclimatology, Paleoecology, 248: 459-472.
  • 16. Marshall, J. D., 1992. Climatic and oceanographic isotopic signals from the carbonate rock record and their preservation. Geological Magazine, 129: 143-160.
  • 17. Michalík, J., Lintnerová, O., Gaździcki, A. & Soták, J., 2007. Record of environmental changes in the Triassic-Jurassic boundary interval in the Zliechov Basin, Western Carpathians. Palaeogeography, Palaeoclimatology, Palaeoecology, 244: 71-88.
  • 18. O'Dogherty, L., Aguado, R., Baumgartner, P. O., Bill, M., Goričan, Š., Sandoval, J. & Sequeiros, L., 2018. Carbonisotope stratigraphy and pelagic biofacies of the Middle-Upper Jurassic transition in the Tethys-Central Atlantic connection. Palaeogeography, Palaeoclimatology, Paleoecology, 507: 129-144.
  • 19. Nunn, E. V., Price, G. D., Hart, M. B., Page, K. N. & Leng, M. J., 2009. Isotopic signals from Callovian-Kimmeridgian (Middle-Upper Jurassic) belemnites and bulk organic carbon, Staffin Bay, Isle of Skye, Scotland. Journal of the Geological Society, 166: 633-641.
  • 20. Padden, M., Weissert, H., Funk, H., Schneider, S. & Gansner, C., 2002. Late Jurassic lithological evolution and carbon-isotope stratigraphy of the western Tethys. Eclogae Geologicae Helvetiae, 95: 333-346.
  • 21. Pearce, C. R., Hesselbo, S. P. & Coe, A. L., 2005. The mid-Oxfordian (Late Jurassic) positive carbon-isotope excursion recognized from fossil wood in the British Isles. Palaeogeography, Palaeoclimatology, Palaeoecology, 221: 311-357.
  • 22. Polák, M., Ondrejíčková, A. & Wieczorek, J., 1998. Lithostratigraphy of the Ždiar Formation of the Krížna nappe. Slovak Geological Magazine, 4: 35-52.
  • 23. Roth, P. H., 1989. Ocean circulation and calcareous nannoplankton evolution during the Jurassic and Cretaceous. Palaeogeography, Palaeoclimatology, Palaeoecology, 74: 111-126.
  • 24. Schmid, S. M., Bernoulli, D., Fügenschuh, B., Matenco, L., Scheffer, S., Schuster, R., Tischler, M. & Ustaszewski, K., 2008. The Alpine-Carpathian-Dinaridic orogenic system: correlation and evolution of tectonic units. Swiss Journal of Geosciences, 101: 139-183.
  • 25. Suchéras-Marx, B., Mattioli, E., Allemand, P., Giraud, F., Pittet, B., Plancq, J. & Escarguel, G., 2019. The colonization of the oceans by calcifying pelagic algae. Biogeosciences, 16: 2501-2510.
  • 26. Wierzbowski, H., 2015. Seawater temperatures and carbon isotope variations in central European basins at the Middle-Late Jurassic transition (Late Callovian-Early Kimmeridgian). Palaeogeography, Palaeoclimatology, Palaeoecology, 440: 506-523.
  • 27. Wierzbowski, H., Dembicz, K. & Praszkier, T., 2009. Oxygen and carbon isotope composition of Callovian-Lower Oxfordian (Middle-Upper Jurassic) belemnite rostra from central Poland: A record of a Late Callovian global sea-level rise? Palaeogeography, Palaeoclimatology, Palaeoecology, 283: 182-194.
  • 28. Wierzbowski, H., Rogov, M. A., Matyja, B. A., Kiselev, D. & Ippolitov, A., 2013. Middle-Upper Jurassic (Upper Callovian-Lower Kimmeridgian) stable isotope and elemental records of the Russian Platform: indices of oceanographic and climatic changes. Global and Planetary Change, 107: 196-212.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1f482fa2-3fe8-4aab-9180-e0674c81d387
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