Basistová, P., 2007. Diatomaceae in the sediments of the Carpathian Foredeep (locality Brno-Královo Pole), Brno, Bachelor thesis. Masaryk University, Faculty of Science, 37 pp. https://is.muni.cz/th/rnscx
Codrea, V., Barbu, Ο., Bedelean, H., 2018. Middle Miocene diatomite-bearing formations from western Romania. Bulletin of the Geological Society of Greece, 40/1, 21. http://doi.org/10.12681/bgsg.1632910.12681/bgsg.16329
Cressman, E.R., 1962. Nondetrital siliceous sediments. In: Fleischer M. (ed.) Data of Geochemistry. Geological survey professional paper, 1-23. http://doi.org/10.3133/pp440t10.3133/pp440T
Demaison, G., Huizinga B.J., 1994. Genetic classification of petroleum systems using three factors: charge, migration and entrapment. AAPG Memoirs 60, 73–92.10.1306/M60585C4
Figarska-Warchoł, B., Stańczak, G., Rembiś, M., Toboła, T., 2015. Diatomaceous rocks of the Jawornik deposit (the Polish Outer Carpathians): petrophysical and petrographical evaluation. Geology, Geophysics and Environment, 41/4, 311–331. https://doi.org/10.7494/geol.2015.41.4.31110.7494/geol.2015.41.4.311
Gaiser, E., Wachnicka, A., Ruiz, P., Tobias, F. and Ross, M., 2005. Diatom indicators of ecosystem change in sub-tropical coastal wetlands. In: Bortone, S.A. (ed.) Estuarine Indicators. CRC Press Marine Science Series, Boca Raton, 599 pp.
Grunert, P., Soliman, A., Harzhauser, M., Müllegger, S., Piller, W., Roetzel, R., Rögl, F., 2010. Upwelling conditions in the Early Miocene Central Paratethys Sea. Geologica Carpathica. 61/2, 129–145.10.2478/v10096-010-0006-3
Harper, M.A., Pledger, S.A., Smith, E.G.C., Van Eaton, A.R., Wilson, C.J.N., 2015. Eruptive and environmental processes recorded by diatoms in volcanically dispersed lake sediments from the Taupo Volcanic Zone, New Zealand. Journal of Paleolimnology, 54/4, 263–277. https://doi.org/10.1007/s10933-015-9851-510.1007/s10933-015-9851-5
Jirman, P., Geršlová, E., Bubík, M., Sachsenhofer, R. F., Bechtel, A., Więcław, D. (2019). Depositional environment and hydrocarbon potential of the Oligocene Menilite Formation in the Western Carpathians: A case study from the Loučka section (Czech Republic). Marine and Petroleum Geology, 107, 334–350. https://doi.org/10.1016/j.marpetgeo.2019.05.03410.1016/j.marpetgeo.2019.05.034
Kotarba, M.J., Koltun, Y.V., 2006. The origin and habitat of hydrocarbons of the Polish and Ukrainian parts of the Carpathian Province. In: Golonka, J. & Picha, F.J. (eds.) The Carpathians and Their Foreland: Geology and Hydrocarbon Resources. AAPG Memoirs, 84, 395–442. https://doi.org/10.1306/985614m84307410.1306/985614M843074
Kotlarczyk, J., Uchman, A., 2012. Integrated ichnology and ichthyology of the Oligocene Menilite Formation, Skole and Subsilesian nappes, Polish Carpathians: a proxy to oxygenation history. Palaeogeography, Palaeoclimatology, Palaeoecology, 331, 104–118. https://doi.org/10.1016/j.palaeo.2012.03.00210.1016/j.palaeo.2012.03.002
Krhovský, J., 1981. Stratigraphy and palaeoecology of the Menilite Formation of the Ždánice unit and of the diatomites of the Pouzdřany unit (the western Carpathians, Czechoslovakia) (in Czech with English summary). Zemny Plyn. a Nafta 26, 45–62.
Lafargue. E., Marquis F., Pillot D., 1998. Rock-Eval 6 applications in hydrocarbon exploration, production, and soil contamination studies. Revue de l’institut français du pétrole 53/4, 421–437. https://doi.org/10.2516/ogst:199803610.2516/ogst:1998036
Mayer, J., Rupprecht, B.J., Sachsenhofer, R.F., Tari, G., Bechtel, A., Coric, S., Siedl, W., Kosi, W., 2018. Source Potential and Depositional Environment of Oligocene and Miocene rocks Offshore Bulgaria. In: Simmons, M. et al. (eds.), Geological Society, London, Special Publications 464, 307–328. https://doi.org/10.1144/SP464.210.1144/SP464.2
Pantocsek, J., 1889. Beiträge zur Kenntnis der Fossilen Bacillarien Ungarns. Teil II. Brackwasser Bacillarien. Anhang: Analyse de marine Depots von Bory, Bremia, Nagy-Kurtos in Ungarn; Ananio und Kusnetzk in Russland. Nagy-Tapolcsány, Buchdruckerei von Julius Platzko, 123 pp.
Pícha, F.J., Stráník, Z., 1999. Late Cretaceous to early Miocene deposits of the Carpathian foreland basin in southern Moravia. International Journal of Earth Sciences, 88, 475–495.10.1007/s005310050280
Roetzel, R., Ćoric, S., Galovic, I., Rögl, F., 2006. Early Miocene (Ottnangian) coastal upwelling conditions along the southeastern scarp of the Bohemian Massif (Paris-dorf, Lower Austria, Central Paratethys). Beiträge zur Paläontologie, 30, 387–413.
Ross, R., 1995. Revision of Rutilaria Greville (Bacillariophyta). Bulletin of the Natural History Museum. Botany Series. Bulletin of the Natural History Museum of London Botany, 25 1–93.
Sachsenhofer, R.F., Bechtel, A., Reischenbacher, D., Weiss, A., 2003. Evolution of lacustrine systems along the Miocene Mur-Mürz fault system (Eastern Alps, Austria) and implications on source rocks in pull-apart basins. Marine and Petroleum Geology, 20, 83–110. https://doi.org/10.1016/s0264-8172(03)00018-710.1016/S0264-8172(03)00018-7
Sachsenhofer, R.F., Popov, S.V., Bechtel, A., Coric, S., Fran-cu, J., Gratzer, R., Grunert, P., Kotarba, M., Mayer, J., Pupp, M., Rupprecht, B.J., 2018a. Oligocene and Lower Miocene source rocks in the Paratethys: Palaeogeographic and stratigraphic controls. In: Simmons M, (editor) Petroleum Geology of the Black Sea. Geological Society London, Special Publication, 464, 267–306. https://doi.org/10.1144/sp464.110.1144/SP464.1
Schrader H.J., 1973. Proposal for a standardized method of cleaning diatoms-bearing deep-sea and land-exposed marine sediments. In: Simonsen, R. (eds.) Second symposium on recent and fossil diatoms. Nova Hedwigia, supplement 45, 409.
Schrader, H., Gersonde R., 1978. Diatoms and silicoflagellates. In: Zachariasse et al. Microplaeontological counting methods and techniques - an excercise on an eight metres section of the lower Pliocene of Capo Rossello. Sicily. Utrecht Micropaleontological Bulletin, 17, 129–76.
Schultz, L., 1964. Quantitative interpretation of miner-alogical composition from X-ray and chemical data for the Pierre Shale. United States Geological Survey, 391 pp.10.3133/pp391C
Shukla, S.K., Mohan, R., 2012. The Contribution of Di-atoms to Worldwide Crude Oil Deposits. In: Gordon R., Seckbach J. (eds.) The Science of Algal Fuels. Cellular Origin, Life in Extreme Habitats and Astrobiology, Springer, Dordrecht, 25, 355–382. https://doi.org/10.1007/978-94-007-5110-1_2010.1007/978-94-007-5110-1_20
Tari, G., Horváth, F., 2006. Alpine evolution and hydro-carbon geology of the Pannonian Basin: an overview. In: Golonka J., Picha F. (eds.), The Carpathians and their Foreland: Geology and Hydrocarbon Resources. AAPG Memoir, 84, 605–618. https://doi.org/10.1306/985733m84314110.1306/985733M843141
Tulan, E., Sachsenhofer, R.F., Horvat, A., Tari, G., Olaru-Florea, R.F., 2019. Hydrocarbon source rock potential of Oligo-Miocene diatomaceous rocks in Sibiciu de Sus, Romania, Abstracts AAPG Paratethys Petroleum Systems between Central Europe and the Caspian Region, Vienna.
Varga, G., Csillag-Teplánszky, E., Félegyházi, Z., 1975. Geology of the Mátra Mountains (in Hungarian). Annual Report of the Hungarian Geological Insitute 57/1, 575 pp.
Witkowski, A., Lange-Bertalot, H., Metzeltin, D., 2000. Diatom flora of marine coasts I. Iconographia Diatomologica 7. ARG Gantner Verlag KG, Ruggell, 7, 950 pp.
Zolitschka B., 1998. Paläoklimatische Bedeutung laminierter Sedimente. Holzmaar (Eifel, Deutschland), Lake C2 (Nordwest-Territorien, Kanada) und Lago Grande di Monticchio (Basilicata, Italien). Bornträger, Berlin, 176 pp.