Reworked Middle Jurassic sandstones as a marker for Upper Cretaceous basin inversion in Central Europe—a case study for the U–Pb detrital zircon record of the Upper Cretaceous Schmilka section and their implication for the sedimentary cover of the Lausitz Block (Saxony, Germany)

被引:0
作者
Mandy Hofmann
Thomas Voigt
Lucas Bittner
Andreas Gärtner
Johannes Zieger
Ulf Linnemann
机构
[1] Senckenberg Naturhistorische Sammlungen Dresden,Institut für Geowissenschaften, LS Allgemeine und Historische Geologie
[2] Museum für Mineralogie und Geologie,Fakultät für Agrar
[3] Sektion Geochronologie, und Ernährungswissenschaften, Bodenbiogeochemie
[4] Friedrich Schiller Universität Jena,undefined
[5] Martin-Luther-Universität Halle-Wittenberg,undefined
来源
International Journal of Earth Sciences | 2018年 / 107卷
关键词
Middle Jurassic; Upper Cretaceous; Schmilka; Lausitz Block; Zircon U–Pb geochronology; Provenance;
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摘要
The Saxonian–Bohemian Cretaceous Basin (Elbsandsteingebirge, E Germany and Czech Republic, Elbtal Group) comprises Upper Cretaceous sedimentary rocks from Upper Cenomanian to Santonian age. These sandstones were deposited in a narrow strait of the sea linking the northern Boreal shelf to the southern Tethyan areas. They were situated between the West Sudetic Island in the north and the Mid-European Island in the south. As known by former studies (e.g. Tröger, Geologie 6/7:717–730, 1964; Tröger, Geologie von Sachsen, Schweizerbart, 311–358, 2008; Voigt and Tröger, Proceedings of the 4th International Cretaceous Symposium, 275–290, 1996; Voigt, Dissertation, TU Bergakademie Freiberg, 1–130, 1995; Voigt, Zeitschrift der geologischen Wissenschaften 37(1-2): 15–39, 2009; Wilmsen et al., Freiberger Forschungshefte C540: 27–45, 2011) the main sedimentary input came from the north (Lausitz Block, southern West-Sudetic Island). A section of Turonian to Coniacian sandstones was sampled in the Elbsandsteingebirge near Schmilka (Elbtal Group, Saxony, Germany). The samples were analysed for their U–Pb age record of detrital zircon using LA-ICP-MS techniques. The results show main age clusters typical for the Bohemian Massif (local material) and are interpreted to reflect the erosion of uniform quartz-dominated sediments and basement rocks. Surprisingly, these rocks lack an expected Upper Proterozoic to Lower Palaeozoic age peak, which would be typical for the basement of the adjacent Lausitz Block (c. 540–c. 560 Ma). Therefore, the Lausitz Block basement must have been covered by younger sediments that acted as source rocks during deposition of the Elbtal Group. The sandstones of the Elbe valley (Elbtal Group, Schmilka section) represent the re-deposited sedimentary cover of the Lausitz Block in inverse order. This cover comprised Permian, Triassic, Jurassic and Lower Cretaceous deposits, which are eroded already today and cannot be investigated. Within the samples of the Elbtal Group (Schmilka section), the zircon age patterns change significantly towards the Lower Coniacian (topmost sample of the analysed section), where a major input of Meso- and Paleoproterozoic grains was obtained. Comparable ages are generally scarce in the working area. To have a reference for the detrital zircon age spectra of Triassic and Jurassic sediments of the area, two Upper Triassic und two Middle Jurassic clastic sediments of Germany were analysed. Surprisingly, the two Middle Jurassic (Dogger) sandstones from Bavaria and Lower Saxony showed similar detrital zircon age compositions as the Coniacian sediments on top of the Schmilka section (Elbe valley, Elbtal Group). In contrast, the two Upper Triassic sediments could be excluded as possible source rocks for the Upper Cretaceous sandstones of the Elbe valley (Schmilka section, Elbtal Group). The Meso- and Paleoproterozoic zircon age populations in the uppermost sandstone sample of the Schmilka section are assumed to originate from recycled Jurassic (Dogger) sandstones, resting on the Lausitz Block. These Middle Jurassic deposits were strongly influenced by a sedimentary input from the Scandinavian region (southern Baltica and North Sea Dome). The Turonian sandstones of the Schmilka section (samples below the topmost Coniacian sample) are interpreted to represent re-deposited Lower Cretaceous sediments resting on the Lausitz Block. A proposed synsedimentary uplift of about 5 km during the Upper Cretaceous along the Lausitz Fold (Lange et al., Zeitschrift der Deutschen Gesellschaft für Geowissenschaften 159(1):123–132, 2008) would have caused erosion of the pre-existing sedimentary cover of the Lausitz Block followed by inverse accumulation of the detritus into the Cretaceous Basin (Elbe valley, Elbtal Group). The Permian and Triassic cover units of the Lausitz Block were not exposed during the Upper Cretaceous, but are assumed to have contributed to younger (post-Coniacian) sediments of the Elbtal Group, which were eroded during uppermost Cretaceous and lower Paleogene. Based on this study, the detrital zircon record of the Jurassic Dogger sandstones of Germany can be seen as “marker ages” for the European Cretaceous Basin inversion. This paper presents the first results of a case study with further investigations in other areas of Europe to follow.
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页码:913 / 932
页数:19
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共 70 条
  • [11] Mansfeld J(2006)Combined U–Pb and Hf isotope LA-(MC-)ICP-MS analysis of detrital zircons: comparison with SHRIMP and new constraints for the provenance and age of an Armorican metasediment in Central Germany Earth Planet Sci Lett 249 47-61
  • [12] Sigmond EMO(2009)Zircon formation versus zircon alteration—new insights from combined U–Pb and Lu-Hf in-situ La-ICP-MS analyses of Archean zircons from the Limpopo Belt Chem Geol 261 230-243
  • [13] Stein H(1993)The early evolution of the Southwest Swedish Gneiss Province: geochronological and isotopic evidence from southernmost Sweden Prec Res 64 361-388
  • [14] Bleiner D(2008)Apatitspaltspurdaten zur postvariszischen thermotektonischen Entwicklung des sächsischen Grundgebirges—erste Ergebnisse Zeitschrift der Deutschen Gesellschaft für Geowissenschaften 159 123-132
  • [15] Günther D(2007)Proterozoic evolution and provenance of the high-grade Jotun Nappe complex, SW Norway: U–Pb geochronology Prec Res 159 133-154
  • [16] Danišik M(2008)Provenance of siliciclastic sediments (Permian to Jurassic) in the Central European Basin Zeitschrift der Deutschen Gesellschaft für Geowissenschaften 159 641-650
  • [17] Migoń P(1954)Sedimentpetrographische Untersuchungen oberturoner Sandsteine im Elbsandsteingebirge Freib Forsch C11 1-96
  • [18] Kuhlemann J(1981)Probleme der Korrelation des Cenomas und Turons in der Sächsischen und Böhmischen Kreide Z Geol Wiss 9/4 367-373
  • [19] Evans NJ(1999)Evolution of the Northeast German Basin—inferences from3D structural modelling and subsidence analysis Tectonophysics 313 145-169
  • [20] Dunkl I(2004)Age display: an Excel workbook to evaluate and display univariate geochronological data using binned frequency histograms and probability density distributions Comput Geosci 30 21-31