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Foraminiferal colonization related to the Zechstein (Lopingian) transgression in the western part of the Wolsztyn Palaeo-Ridge area, Western Poland

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Języki publikacji
EN
Abstrakty
EN
The basal Zechstein succession in SW Poland is dominated by breccias and/or conglomerates or extraclast-bearing bioclastic limestones, which were deposited during rapid flooding of the pre-existing intracontinental basin in the early Lopingian (Late Permian). Of these, the boulder-cobble breccias and conglomerates are interpreted as deposited in a rocky shore-zone where density flows and upwelling prevailed. The breccias gradually pass up into bryozoan (or other bioclastics) grainstones. The matrix-supported breccias were deposited as large extraclasts and blocks of Carboniferous rock were rolled down or detached from a cliff and were then either embedded into a carbonate sand or formed a framework supplying voids that could be colonized by tubular encrusting foraminifers. These foraminifers abound in all basal Zechstein facies (except in the debris-flow deposits) and are attributed to Palaeonubecularia. The associated faunas include other foraminifers (uniserial and hemigordiopsids), bryozoans, brachiopods, bivalves, gastropods, and microbial deposits. The prolific growth of tubular encrusting foraminifers has resulted from nutrient supply from the basin by upwelling. Botryoidal aragonite cements (also interpreted as due to upwelling) also characterize the basal Zechstein strata, although they were previously reported only from the upper Zechstein Limestone. The ẟI3C values of the basal Zechstein deposits show small variation and oscillated around 4.0%o, suggesting that these deposits are younger than the Kupferschiefer.
Rocznik
Strony
529--546
Opis fizyczny
Biblogr. 50 poz., fot., rys., tab., wykr.
Twórcy
autor
  • Institute of Paleobiology, Polish Academy of Sciences, Twarda 51/55, 00-818 Warszawa, Poland
autor
  • Polish Geological Institute - National Research Institute, Rakowiecka 4, 00-975 Warszawa, Poland
  • Institute of Geological Sciences, University of Wroclaw, Maksa Borna 9, 50-204 Wroclaw, Poland
autor
  • Polish Oil and Gas Company, Naftowa 3, 65-705 Zielona Góra, Poland
Bibliografia
  • 1. BÖHM F. and BRACHERT T.C. (1993) - Deep-water stromatolites and Frutexites Maslov from the Early and Middle Jurassic of S-Germany and Austria. Facies, 28: 145-168.
  • 2. BRONGERSMA-SANDERS M. (1971) - Origin of major cyclicity of evaporites and bituminous rocks: an actualistic model. Mar. Geol., 11: 123-144.
  • 3. CHEN Z.-Q., SHI G.R. and YANG W.-R. (2003) - Internal structure and paleoecology of the Lower Permian Uzunbulak reef complex of the Tarim Basin, Northwest China. Facies, 49: 119-134.
  • 4. DYJACZYNSKI K., GÓRSKI M., MAMCZUR S. and PERYT T.M. (2001) - Reefs in the basinal facies of the Zechstein Limestone (Upper Permian) of Western Poland. J. Petrol. Geol., 24: 265-285.
  • 5. ESTEBAN M. and KLAPPA C.F. (1983) - Subaerial exposure environment. AAPG Mem., 33: 1-54.
  • 6. FLÜGEL E. (2010) - Microfacies of Carbonate Rocks. Springer.
  • 7. FRIEDRICH O. (2010) - Benthic foraminifera and their role to decipher paleoenvironment during mid-Cretaceous Oceanic Anoxic Events - the “anoxic benthic foraminifera” paradox. Revue Micropaléont., 53: 175-192.
  • 8. GLENNIE K.W. and BULLER A.T. (1983) - The Permian Weissliegend of NW Europe: the partial deformation of aeolian dune sands caused by the Zechstein transgression. Sedim. Geol., 35: 43-81.
  • 9. HERRMANN A. (1957) - Der Zechstein am südwestlichen Harzrand (seine Stratigraphie, Fazies, Paläogeographie und Tektonik). Geol. Jb., 72: 1-72.
  • 10. JUTRAS P., RYAN R.J. and FITZGERALD R. (2006) - Gradual encroachment of a rocky shoreline by an invasive sea during the Mississippian at the southeastern margin of the Maritimes Basin, Nova Scotia, Canada. Can. J. Earth Sc., 43 (8): 1183-1204.
  • 11. KABANOV P. (2003) - The Upper Moscovian and Basal Kasimovian (Pennsylvanian) of Central European Russia: facies, subaerial exposures and depositional model. Facies, 49: 243-270.
  • 12. KIERSNOWSKI H., PERYT T.M., BUNIAK A. and MIKOŁAJEWSKI Z. (2010) - From the intra-desert ridges to the marine carbonate island chain: middle to late Permian (Upper Rotliegend-Lower Zechstein) of the Wolsztyn-Pogorzela high, west Poland. Geol. J., 44: 319-335.
  • 13. KOCH J.T. and FRANK T.D. (2012) - Imprint of the Late Palaeozoic Ice Age on stratigraphic and carbon isotopic patterns in marine carbonates of the Orogrande Basin, New Mexico, USA. Sedimentology, 59: 291-318.
  • 14. KWOLEK K. and MIKOŁAJEWSKI K. (2007) - New stratigraphic scheme for Zechstein rocks in the Pogorzela High (Foresudetic Monocline) and its significance for hydrocarbon exploration. Prz. Geol., 55 (12/1): 1037-1047.
  • 15. MAIZELS J. (1989) - Sedimentology, paleoflow dynamics and flood history of Jokulhlaup deposits: paleohydrology of Holocene sediment sequences in southern Iceland sandur deposits. J. Sedim. Petrol., 59 (2): 204-223.
  • 16. McCANN T., KIERSNOWSKI H., KRAINER K., VOZÁROVÁ A., PERYT T., OPLUSTIL S., STOLLHOFEN H., SCHNEIDER J., WETZEL A., BOULVAIN F., DUSAR M., TÖRÖK A., HAAS J., TAIT J. and KÖRNER F. (2008) - Permian. In: The Geology of Central Europe, volume 1: Precambrian and Palaeozoic (ed. T. McCann): 531-597. The Geological Society of London, London.
  • 17. NAKAZAWA T., UENO K., KAWAHATA H. and FUJIKAWA M. (2011) - Gzhelian-Asselian Palaeoaplysina-microencruster reef community in the Taishaku and Akiyoshi limestones, SW Japan: implications for Late Palaeozoic reef evolution on mid-Panthalassan atolls. Palaeogeogr. Palaeoclimatol. Palaeoecol., 310: 378-392.
  • 18. NEMEC W. and POSTMA G. (1993) - Quaternary alluvial fans in southwestern Crete: sedimentation processes and geomorphic evolution. IAS Spec. Publ., 17: 234-276.
  • 19. NEMEC W., PORĘBSKI S.J. and STEEL R.J. (1980) - Texture and structure of resedimented conglomerates: examples from Książ Formation (Famennian-Tournaisian), southwestern Poland. Sedimentology, 27: 519-538.
  • 20. OSZCZEPALSKI S. (1989) - Kupferschiefer in southwestern Poland: sedimentary environments, metal zoning, and ore controls. Geol. Ass. Can., Spec. Pap., 36: 571-600.
  • 21. PAUL J. (1980) - Upper Permian algal stromatolitic reefs, Harz Mountains (F. R. Germany). Contr. Sedim., 9: 253-268.
  • 22. PAUL J. (1982) - Zur Rand- und Schwellen-Fazies des Kupferschiefers. Z. dt. geol. Ges., 133: 571-605.
  • 23. PAUL J. (1987) - Der Zechstein am Harzrand: Querprofil über eine permische Schwelle. Internationales Symposium Zechstein 1987, Exkf. II, Wiesbaden: 193-276.
  • 24. PERYT D., WYRWICKA K., ORTH C., ATTREP M. and QUINTANA L. (1994) - Foraminiferal changes and geochemical profiles across the Cenomanian/Turonian boundary in central and southeast Poland. Terra Nova, 6: 158-165.
  • 25. PERYT T.M. (1978) - Sedimentology and paleoecology of the Zechstein Limestone (Upper Permian) in the Fore-Sudetic area (western Poland). Sedim. Geol., 20: 217-243.
  • 26. PERYT T.M. (1984) - Sedimentation and early diagenesis of the Zechstein Limestone in Western Poland (in Polish with English summary). Prace Inst. Geol., 109: 1-80.
  • 27. PERYT T.M. and PERYT D. (1975) - Association of sessile tubular foraminifera and schizophytic algae. Geol. Mag., 112: 612-614.
  • 28. PERYT T.M. and PERYT D. (1977) - Zechstein foraminifera from the Fore-Sudetic monocline area (West Poland) and their paleoecology (in Polish with English summary). Rocz. Pol. Tow. Geol., 47 (2): 301-326.
  • 29. PERYT T.M. and PERYT D. (2012) - Geochemical and foraminiferal records of environmental changes during Zechstein Limestone (Lopingian) deposition in Northern Poland. Geol. Quart., 56 (1): 187-198.
  • 30. PERYT T.M. and PIĄTKOWSKI T.S. (1977) - Stromatolites from the Zechstein Limestone (Upper Permian) of Poland. In: Fossil Algae (ed. E. Flügel): 124-135. Springer.
  • 31. PERYT T.M., GELUK M.C., MATHIESEN A., PAUL J. and SMITH K. (2010) - Zechstein. In: Petroleum Geological Atlas of the Southern Permian Basin Area (eds. J.C. Doornenbal and A.G. Stevenson): 123-147. EAGE Publications b.v. (Houten).
  • 32. PERYT T.M., DURAKIEWICZ T., KOTARBA M.J., OSZCZEPALSKI S. and PERYT D. (2012a) - Carbon isotope stratigraphy of the basal Zechstein (Lopingian) strata in Northern Poland and its global correlation. Geol. Quart., 56 (2): 285-298.
  • 33. PERYT T.M., RACZYŃSKI P., PERYT D. and CHŁÓDEK K. (2012b) - Upper Permian reef complex in the basinal facies of the Zechstein Limestone (Ca1), western Poland. Geol. J., doi:10.1002/gj2440
  • 34. POSTMA G. (1986) - Classification for sediment gravity-flow deposits based on flow conditions during sedimentation. Geology, 14: 291-294.
  • 35. REOLID M. and MOLINA J.M. (2010) - Serpulid-Frutexites assemblage from shadow-cryptic environments in Jurassic marine caves, Betic Cordillera, south ern Spain. Palaios, 25: 468-474.
  • 36. REOLID M. and NIETO L.M. (2010) - Jurassic Fe-Mn oncoids from pelagic swells of the External Subbetic (Spain): evidences of microbial origin. Geol. Acta, 8: 151-168.
  • 37. RIBES T., SALVADO H., ROMERO J. and GRACIA M.d.P. (2000) - Foraminiferal colonization on artificial seagrass leaves. J. Foram. Res., 30: 192-201.
  • 38. RICHARDSON-WHITE S. and WALKER S.E. (2011) - Diversity, taphonomy and behavior of encrusting foraminifera on experimental shells deployed along a shelf-to-slope bathymetric gradient, Lee Stocking Island, Bahamas. Palaeogeogr. Palaeoclimatol. Palaeoecol., 312: 305-324.
  • 39. RICHTER-BERNBURG G. (1955) - Der Zechstein zwischen Harz und Rheinische Schiefergebirge. Bericht eine Exkursion zu den Zechsteinaufschlüssen dieses Gebietes anlässlich der Frühjahrstagung der Deutschen Geologischen Gesellschaft in Goslar 1953. Z. dt. geol. Ges., 105: 876-899.
  • 40. RIDING R. and GUO L. (1992) - Affinity of Tubiphytes. Palaeontology, 35:37-49.
  • 41. SANDERS D. and KRAINER K. (2005) - Taphonomy of Early Permian benthic assemblages (Carnic Alps, Austria): carbonate dissolution versus biogenic carbonate precipitation. Facies, 51: 522-540.
  • 42. SCOTESE C.R. (2002) - Atlas of Earth History, PALEOMAP Project, Arlington, Texas.
  • 43. SENOWBARI-DARYAN B. and FLÜGEL E. (1993) - Tubiphytes Maslov, an enigmatic fossil: Classification, fossil record and significance through time. Part I: Discussion of Late Palaeozoic material. Boll. Soc. Paleont. Ital., Spec., 1: 353-382.
  • 44. SMITH D.B. (1979) - Rapid marine transgressions and regressions of the Upper Permian Zechstein Sea. J. Geol. Soc. London, 136: 155-156.
  • 45. TUCKER M.E. and HOLLINGWORTH N.T.J. (1986) - The Upper Permian Reef Complex (EZ1) of North East England: diagenesis in a marine to evaporitic setting. In: Reef Diagenesis (eds. J.H. Schroeder and B.H. Purser): 270-290. Springer, Berlin.
  • 46. VACHARD D., PILLE L. and GAILLOT J. (2010) - Palaeozoic Foraminifera: Systematics, palaeoecology and responses to global changes. Revue Micropaléont., 53: 209-254.
  • 47. WALKER S.E., PARSONS-HUBBARD K., RICHARDSON-WHITE S., BRETT C. and POWELL E. (2011) - Alpha and beta diversity of encrusting foraminifera that recruit to long-term experiments along a carbonate platform-to-slope gradient: Paleoecological and paleoenvironmental implications. Palaeogeogr. Palaeoclimatol. Palaeoecol., 312: 325-349.
  • 48. WEBB G.E. (1994) - Paleokarst, paleosol, and rocky-shore deposits at the Mississippian-Pennsylvanian unconformity, northwestern Arkansas. GSA Bull., 106 (5): 634-648.
  • 49. WEIDLICH O. (2002) - Middle and Late Permian reefs - distributional patterns and reservoir potential. SEPM Spec. Publ., 72: 339-390.
  • 50. ZIEGLER P.A. (1990) - Geological Atlas of Western and Central Europe. 2nd edition, Geol. Soc. Publ. House (Bath).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e1765978-5500-488f-a398-57f21249aa7f
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