Cite

Berka, R., 2015. Zur Geologie der großen Beckengebiete des Ostalpenraumes. Abhandlungen der Geologischen Bundesanstalt, 64, 71–141.Search in Google Scholar

Chamley, H., 1989. Clay Sedimentology. Springer-Verlag Berlin Heidelberg, XX+623 pp. http://dx.doi.org/10.1007/978-3-642-85916-810.1007/978-3-642-85916-8Search in Google Scholar

Ćorić, S., 2017. 3.5. Molasse. In: Erläuterungen zur Geologischen Karte der Republik Österreich 1:50.000 Blatt 56 St. Pölten, Geologische Bundesanstalt, Wien, pp. 33-34.Search in Google Scholar

Dickson, J.A., 1966. Carbonate identification and genesis as revealed by staining. Journal of Sedimentary Petrology, 36, 491–505. https://doi.org/10.1306/74D714F6-2B21-11D7-8648000102C1865D10.1306/74D714F6-2B21-11D7-8648000102C1865DSearch in Google Scholar

Gebhardt, H., Ćorić, S., Krenmayr, H.-G., Steininger, H., Schweigl, J., 2013. Neudefinition von lithostratigraphischen Einheiten des oberen Ottnangium (Unter-Miozän) in der alpin-karpatischen Vortiefe Niederösterreichs: Pixendorf-Gruppe, Traisen-Formation und Dietersdorf-Formation. Jahrbuch der Geologischen Bundesanstalt, 153, 15–32.Search in Google Scholar

Gier, S., 1998. Burial diagenetic processes and clay mineral formation in the Molasse Zone of Upper Austria. Clays and Clay Minerals, 46, 658–669.10.1346/CCMN.1998.0460606Search in Google Scholar

Gier, S., 2000. Clay mineral- and organic diagenesis of the Lower Oligocene Schöneck Fishshale, western Austrian Molasse Basin. Clay Minerals, 35, 709–717.10.1180/000985500547151Search in Google Scholar

Gradstein, F.M., Ogg, J.G., Schmitz, M.D., Ogg, G.M., 2012. The Geologic Time Scale 2012. Elsevier B V. https://doi.org/10.1016/C2011-1-08249-8.10.1016/C2011-1-08249-8Search in Google Scholar

Harzhauser, M., Mandic, O., 2008. Neogene lake systems of Central and South-Eastern Europe: Faunal diversity, gradients and interrelations. Palaeogeography, Palaeo-climatology, Palaeoecology, 260, 417–434. https://doi.org/10.1016/j.palaeo.2007.12.01310.1016/j.palaeo.2007.12.013Search in Google Scholar

Harzhauser, M., Mandic, O., Kranner, M., Lukeneder, P., Kern, A.A., Gross, M., Carnevale, G., Jawecki, C., 2018. The Sarmatian/Pannonian boundary at the western margin of the Vienna Basin (City of Vienna, Austria). Austrian Journal of Earth Sciences, 111/1, 1–26. https://doi.org/10.17738/ajes.2018.000310.17738/ajes.2018.0003Search in Google Scholar

Höhn, S., Frimmel, H.E., Pašava, J., 2014. The rare earth element potential of kaolin deposits in the Bohemian Massif (Czech Republic, Austria). Mineralium Deposita, 49/8, 967–986. https://doi.org/10.1007/s00126-014-0542-310.1007/s00126-014-0542-3Search in Google Scholar

Hower, J., Eslinger, E.V., Hower, M.E.. Perry, E.A., 1976. Mechanism of burial metamorphism of argillaceous sediment: 1. Mineralogical and chemical evidence. Geological Society of America Bulletin, 87, 725–737.10.1130/0016-7606(1976)87<725:MOBMOA>2.0.CO;2Search in Google Scholar

Knierzinger, W., Wagreich, M., Palzer-Khomenko, M., Gier, S., Meszar, M., Lee, E.Y., Koukal, V., Strauss, P., 2018. Provenance and palaeogeographic evolution of Lower Miocene sediments in the eastern North Alpine Foreland Basin. Swiss Journal of Geosciences, 112, 269–286. https://doi.org/10.1007/s00015-018-0312-910.1007/s00015-018-0312-9Search in Google Scholar

Knierzinger, W., Wagreich, M., Kiraly, F., Lee, E.Y., Ntaflos, T., 2019. TETGAR_C: a novel three-dimensional (3D) provenance plot and calculation tool for detrital garnets. Journal of Geosciences, 64, 127–148. https://doi.org/10.3190/jgeosci.28410.3190/jgeosci.284Search in Google Scholar

Kováč, M., Hudáčková, N., Halásová, E., Kováčová, M., Holcová, K., Oszczypko-Clowes, M., Báldi, K., Less, G., Nagyma-rosy, A., Ruman, A., Klučiar, T., Jamrich, M., 2017. The Central Paratethys palaeoceanography: a water circulation model based on microfossil proxies, climate, and changes of depositional environment. Acta Geologica Slovaca, 9/2, 75–114.Search in Google Scholar

Kováč, M., Halásová, E., Hudáčková, N., Holcová, K., Hyžný, M., Jamrich, M., Ruman, A., 2018. Towards better correlation of the Central Paratethys regional time scale with the standard geological time scale of the Miocene Epoch. Geologica Carpathica, 69/3, 283-300. https://doi.org/10.1515/geoca-2018-001710.1515/geoca-2018-0017Search in Google Scholar

Krenmayr, H.-G., Roetzel, R., 2000. Die lithostratigraphische Formalisierung der Melker- und Linzer Sande: Die «Linz-Melk-Formation». Berichte des Institutes für Erdwissenschaften der Karl-Franzens-Universität Graz, 2, 10.Search in Google Scholar

Krijgsman, W., Piller, W.E., 2012. Regional Stages; Central and Eastern Paratethys. In: Gradstein F.M., Ogg J.G., Schmitz M.D. & Ogg G.M. (eds.), The geologic time scale 2012. Elsevier, Oxford, United Kingdom, pp. 935–937.Search in Google Scholar

Lukács, R., Harangi, S., Guillong, M., Bachmann, O., Fodor, L., Buret, Y., Dunkl, I., Sliwinski, J., von Quadt, A., Peytcheva, I., Zimmerer, M., 2018. Early to Mid-Miocene syn-extensional massive silicic volcanism in the Pannonian Basin (East-Central Europe): eruption chronology, correlation potential and geodynamic implications. Earth-Science Reviews, 179, 1–19. https://doi.org/10.1016/j.earscirev.2018.02.00510.1016/j.earscirev.2018.02.005Search in Google Scholar

Menzl, F., 1988. Genese und Alter der Kaolinlagerstätte Krumnußbaum an der Donau (Niederösterreich). Archiv für Lagerstättenforschung der Geologischen Bundesanstalt, 9, 67–72.Search in Google Scholar

Meszar, M., 2018. Clay mineralogy of Miocene mudstones of the Lower Austrian Molasse Basin. Unpublished Master’s Thesis, University of Vienna, Vienna, Austria, 115pp.Search in Google Scholar

Meunier, A., 2005. Clays. Springer-Verlag Berlin Heidelberg, XIV + 472. https://doi.org/10.1007/b13867210.1007/b138672Search in Google Scholar

Migoñ, P., 2003. Paleoweathering record and paleosurfaces in the Bohemian Massif, Central Europe and Fennoscandian Shield, Northern Europe. A basis for East-West comparisons. Géologie de la France, 1, 53–56.Search in Google Scholar

Moore, D.M., Reynolds, R.C., 1997. X-ray diffraction and the identification and analysis of clay minerals (2nd ed.). Oxford University Press, Oxford, 378 pp. https://doi.org/10.1017/S001675689850150110.1017/S0016756898501501Search in Google Scholar

Nehyba, S., Roetzel, R., 1999. Lower Miocene Volcaniclastics in South Moravia and Lower Austria. Jahrbuch der Geologischen Bundesanstalt, 141/4, 473–490.Search in Google Scholar

Palzer-Khomenko, M., Wagreich, M., Kallanxhi, M.-E., Soliman, A., Knierzinger, W., Meszar, M., Gier, S., 2018a. Facies, paleogeography and stratigraphy of the Lower Miocene Traisen Formation and Wildendürnbach Formation (former “Oncophora Beds) in the Molasse Zone Lower Austria. Austrian Journal of Earth Sciences, 111/1, 75–91. https://doi.org/10.17738/ajes.2018.000610.17738/ajes.2018.0006Search in Google Scholar

Palzer-Khomenko, M., Wagreich, M., Knierzinger, W., Meszar, M., Gier, S., Kallanxhi, M.-E., Soliman, A., 2018b. A calcite crisis unravelling Early Miocene (Ottnangian) stratigraphy in the North Alpine-Carpathian Foreland Basin: A lithoand chemostratigraphic marker for the Rzehakia Lake System. Geologica Carpathica, 69/4, 315–334. https://doi.org/10.1515/GEOCA-2018-001910.1515/geoca-2018-0019Search in Google Scholar

Piller, W.E., Egger, H., Erhart, C.W., Gross, M., Harzhauser, M., Hubmann, B., van Husen, D., Krenmayr, H.-G., Krystyn, L., Lein, R., Lukeneder, A., Mandl, G.W., Roegl, F., Roetzel, R., Rupp, R., Schnabel, W., Schönlaub, H.P., Summersberger, H., Wagreich, M., Wessely, G., 2004. Die stratigrafische Ta-belle von Österreich 2004 (sedimentäre Schichtfolgen). Kommission für die paläontologische und stratigrafische Erforschung der Österreichischen Akademien der Wissenschaften und Österreichische Stratigraphische Kommission, Vienna.Search in Google Scholar

Piller, W.E., Harzhauser, M., Mandic, O., 2007. Miocene Central Paratethys stratigraphy - Current status and future directions. Stratigraphy, 4/2-3, 151–168.Search in Google Scholar

Pippèrr, M., Reichenbacher, B., 2017. Late Early Miocene palaeoenvironmental changes in the North Alpine Fore-land Basin. Palaeogeography, Palaeoclimatology, Palaeoecology, 468, 485–502. https://doi.org/10.1016/j.palaeo.2017.01.00210.1016/j.palaeo.2017.01.002Search in Google Scholar

Pippérr, M., Reichenbacher, B., Kirscher, U., Sant, K. and Hanebeck, H., 2018. The middle Burdigalian in the North Alpine Foreland Basin (Bavaria, SE Germany) – a lithostratigraphic, biostratigraphic and magnetostratigraphic re-evaluation. Newsletters on Stratigraphy, 51/3, 285-309.10.1127/nos/2017/0403Search in Google Scholar

Roegl, F., Steininger, F.F., 1983. Vom Zerfall der Tethys zu Mediterran und Paratethys: Die neogene Paläogeographie und Palinspastik des zirkum-mediterranen Raumes. Annalen des Naturhistorischen Museums in Wien: Serie A, 85, 135–163.Search in Google Scholar

Roetzel, R., 2010. Geologie und Geomorphologie im Nationalpark Thayatal-Podyjí. Wissenschaftliche Mitteilungen Niederösterreichisches Landesmuseum, 21, 35–66.Search in Google Scholar

Roetzel, R., Reháková, Z., 1991. Haltepunkt 20 Weitersfeld - Lagerhaus. In: Arbeitstagung der Geologischen Bundesanstalt 1991 Geologie am Ostrand der Böhmischen Masse von Niederösterreich Schwerpunkt Blatt 21 Horn, Geologische Bundesanstalt, Wien, pp. 204–206.Search in Google Scholar

Roetzel, R., Coric, S., Galovic, I., Rögl, F., 2006. Early Miocene (Ottnangian) coastal upwelling conditions along the southeastern scarp of the Bohemian Massif (Parisdorf, Lower Austria, Central Paratethys). Beiträge zur Paläontologie, 30, 387–413.Search in Google Scholar

Roetzel, R., Krenmayr, H. G., Ćorić, S., Rögl, F., 2013. Exkursion E2 – Fazies und Stratigrafie der oligozänen und miozänen Sedimente in der alpinen Vortiefe auf den Blättern 55 Ober-Grafendorf und 56 St. Pölten: Haltepunkt E2/6: Untermamau - Sandgrube Spring. In: Gebhardt, H. (ed.), Arbeitstagung 2013 der Geologischen Bundesanstalt Geologie der Kartenblätter 55 Ober-Grafendorf und 56 St. Pölten, Melk 23.-27. September 2013, Geologische Bundesanstalt, Wien, pp. 236–269.Search in Google Scholar

Roetzel, R., Wimmer-Frey, I., de Leeuw, A., Mandic, O., Márton, E., Nehyba, S., Kuiper, K., Scholger, R., 2015. Lower Miocene (upper Burdigalian, Karpatian) volcanic ash-fall at the south-eastern margin of the Bohemian Massif in Austria - new evidence from 40Ar/39Ar- dating, palaeo-magnetic, geochemical and mineralogical investigations. Austrian Journal of Earth Sciences, 107/2, 2–22.Search in Google Scholar

Sant, K., V. Palcu, D., Mandic, O., Krijgsman, W., 2017. Changing seas in the Early-Middle Miocene of Central Europe: a Mediterranean approach to Paratethyan stratigraphy. Terra Nova, 29/5, 273–281. https://doi.org/10.1111/ter.1227310.1111/ter.12273Search in Google Scholar

Saussure, H.B. de, 1779. Voyages dans les Alpes. Neuchatel (Fauche-Borel), 540 pp.Search in Google Scholar

Schultz, L., 1964. Quantitative Interpretation of Mineralogical Composition from X-ray and Chemical Data for the Pierre Shale. United States Geological Survey, Professional Paper, 0391-C.10.3133/pp391CSearch in Google Scholar

Sinclair, H.D., 1997. Tectonostratigraphic model for under-filled peripheral foreland basins: An Alpine perspective. Geological Society of America Bulletin, 109, 324–346.10.1130/0016-7606(1997)109<0324:TMFUPF>2.3.CO;2Search in Google Scholar

Steininger, F.F., Roetzel, R., 1999. Älteres Tertiär. Schriftenreihe des Waldviertler Heimatbundes, 38, 75–76.Search in Google Scholar

Steininger, F.F., Wessely, G., Rögl, F., Wagner, L., 1986. Tertiary sedimentary history and tectonic evolution of the Eastern Alpine Foredeep. Giornale di Geologica, 48, 285–297.Search in Google Scholar

Steininger, F., Wessely, G., 2000. From the Tethyan Ocean to the Paratethys Sea: Oligocene to Neogene Stratigraphy, Paleogeography and Paleobiogeography of the circum-Mediterranean region and the Oligocene to Neo-gene Basin evolution in Austria. Mitteilungen der Österreichischen Geologischen Gesellschaft, 92, 95–116.Search in Google Scholar

Wagner, L.R., 1998. Tectono-stratigraphy and Hydrocarbons in the Molasse Foredeep of Salzburg, Upper and Lower Austria. Geological Society London Special Publications 134/1, 339–36910.1144/GSL.SP.1998.134.01.16Search in Google Scholar

Weber, L., 1997. Kaolinbezirk Mühl- und Waldviertel. In: Weber, L. (ed.), Archiv für Lagerstättenforschung der Geologischen Bundesanstalt, 19, 235.Search in Google Scholar

Werneck, W.L., 1980. Oberösterreichs Rohstoffvorkommen in Raum und Zeit. Jahrbuch des oberösterreichischen Musealvereines Gesellschaft für Landeskunde, 125/1.Search in Google Scholar

Wessely, G., 2006. Niederösterreich. Geologische Bundesanstalt, Vienna, 416 pp.Search in Google Scholar

Wimmer-Frey, I., Ćorić, S., Peresson, M., Rabeder, J., 2013. Mineralogische und korngrößenmäßige Untersuchungen an quartären und miozänen Sedimenten auf den Kartenblättern 55 Ober-Grafendorf und 56 St. Pölten. In: In: Gebhardt, H. (ed.), Arbeitstagung 2013 der Geologischen Bundesanstalt Geologie der Kartenblätter 55 Ober-Grafendorf und 56 St. Pölten, Melk 23.-27. September 2013, Geologische Bundesanstalt, Wien, pp. 138–140.Search in Google Scholar

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