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Volume 29 Issue 4
Jul 2018
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Dunja Aljinović, Micha Horacek, Leopold Krystyn, Sylvain Richoz, Tea Kolar-Jurkovšek, Duje Smirčić, Bogdan Jurkovšek. Western Tethyan Epeiric Ramp Setting in the Early Triassic:An Example from the Central Dinarides (Croatia). Journal of Earth Science, 2018, 29(4): 806-823. doi: 10.1007/s12583-018-0787-3
Citation: Dunja Aljinović, Micha Horacek, Leopold Krystyn, Sylvain Richoz, Tea Kolar-Jurkovšek, Duje Smirčić, Bogdan Jurkovšek. Western Tethyan Epeiric Ramp Setting in the Early Triassic:An Example from the Central Dinarides (Croatia). Journal of Earth Science, 2018, 29(4): 806-823. doi: 10.1007/s12583-018-0787-3

Western Tethyan Epeiric Ramp Setting in the Early Triassic:An Example from the Central Dinarides (Croatia)

doi: 10.1007/s12583-018-0787-3
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  • Corresponding author: Duje Smirčić
  • Received Date: 27 Jul 2017
  • Accepted Date: 29 Mar 2018
  • Publish Date: 01 Aug 2018
  • In the central part of the External Dinarides in Plavno, Croatia, near Knin, a remarkably thick (927.5 m) Early Triassic depositional sequence was investigated. The Plavno sequence starts in the EarlyGriesbachian and ends with a continuous transition into the Anisian strata. A complete 13C isotope curve has been achieved and combined with conodonts, bivalves and ammonoids to establish and correlate stage and substage boundaries. The δ13C curve is consistent with former studies. It displays a general increase from the Griesbachian to a prominent maximum beyond the +8‰ amplitude around the Dienerian-Smithian boundary (DSB), followed by a steep and continuous decline to low, negative values in the Smithian. Around the Smithian-Spathian boundary (SSB) a steep rise to a second maximum occurred. It is followed by a saw-tooth shaped decline in the Spathian and a similar increase to a peak at the Spathian-Anisian boundary (SAB).Sedimentologically, the Plavno sequence is interpreted as having been deposited on an extensive epeiric ramp under long-term transgressive conditions, sharing depositional characteristics of both the epeiric platform and the carbonate ramp. The entire Plavno sequence was deposited above the storm-wave base and was storm influenced. Three informal members are differentiated:1) the dolo-stone member (Early Griesbachian); 2) the siliciclastic member (red-coloured shale, siltstone, sand-stone with oolitic/bioclastic grainstone intercalations), which can be further divided into lower, mid-dle and upper intervals (Late Griesbachian, Dienerian and Smithian); and 3) the mudstone member (grey lime mudstones, marls and calcisiltites with common ammonoids and gastropods-Spathian). The Plavno sequence is compared with other western Tethyan sections. Observed differences stem from local controls on deposition in the overall shallow marine environment.

     

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  • Aigner, T., 1985. Storm Depositional Systems: Dynamic Stratigraphy in Modern and Ancient Shallow-Marine Sequences. Lecture Notes in Earth Sci., 3, Springer-Verlag, New York. 173
    Algeo, T. J., Twitchett, R. J., 2010. Anomalous Early Triassic Sediment Fluxes due to Elevated Weathering Rates and Their Biological Conse-quences. Geology, 38(11):1023-1026. https://doi.org/10.1130/g31203.1
    Aljinović, D., 1991. Petrographic and Sedimentologic Characteristics of the Early Triassic Deposits in the Plavno and Strmica: [Dissertation]. University of Zagreb, Zagreb. 92
    Aljinović, D., 1995. Storm Influenced Shelf Sedimentation——An Example from the Lower Triassic (Scythian) Siliciclastic and Carbonate Succession near Knin (Southern Croatia and Western Bosnia and Herzegovina). Geologia Croatica, 48:17-32 http://bib.irb.hr/prikazi-rad?rad=301223
    Aljinović, D., 1997. Facijesi Klasičnih Sedimenata Mlađeg Paleozoika i Starijeg Trijasa Gorskog Kotara (Late Palaeozoic and Early Scythian Clastic Facies in Gorski Kotar, Croatia): [Dissertation]. University of Zagreb, Zagreb. 163
    Aljinović, D., Kolar-Jurkovšek, T., Jurkovšek, B., 2005. Litofaciesna in Konodontna Conacija Spodnjetriasnih Plasti Severozahodnega Dela Zunanjih Dinaridov (Gorkski Kotar, Hrvaška). RMZ-Materials and geoenvironment RMZ-materiali in geookolje, 52:581-596 http://repozitorij.uni-lj.si/IzpisGradiva.php?id=78544&lang=eng
    Aljinović, D., Kolar-Jurkovšek, T., Jurkovšek, B., 2006. The Lower Triassic Shallow Marine Succession in Gorski Kotar Region (External Dinarides, Croatia):Lithofacies and Conodont Dating. Rivista Italiana di Paleontologia e Stratigrafia, 112:35-53 http://bib.irb.hr/prikazi-rad?lang=EN&rad=268656
    Aljinović, D., Kolar-Jurkovšek, T., Jurkovšek, B., et al., 2011. Conodont Dating of the Lower Triassic Sedimentary Rocks in the External Dinarides (Croatia and Bosnia and Herzegovina). Rivista Italiana di Paleontologia e Stratigrafia, 117:135-148
    Assereto, R., Bosellini, A., Fantini Sestini, N., et al., 1973. The Permian-Triassic Boundary in the Southern Alps (Italy). In: Logan, A., Hills, L. V., eds., The Permian and Triassic Systems and Their Mutual Boundary. Canadian Soc. Petroleum Geol. Mem., 2: 176-199
    Babić, L. J., 1968. O Trijasu Gorskog Kotara i Susjednih Područja (Sur le Trias Dans le Gorski Kotar et les Regions Voisines). Geol. Vjesnik, 22:11-23
    Bauer, F. K., Cerny, I., Exner, C., et al., 1983. Erlauterungen zur Geologischen Karte der Karawanken 1: 25 000. Geologische Bundesanstalt Wien, Ostteil. 86
    Bosellini, A., 1964. Stratigrafia, Petrografia e Sedimentologia Delle Facies Carbonatiche al Limite Permiano-Trias Nelle Dolomiti Occidentali. Mem. Mus. St. Nat. Ven. Trid., 15:59-110
    Bosellini, A., 1968. Paleogeologia Pre-Anisica Delle Dolomiti Centrosettentrionali. Atti Accademia Nazionale dei Lincei. Memorie della Classe di Scienza Fisiche Matematiche e Maturali, 9(8):1-33
    Brandner, R., Horacek, M., Keim, L., et al., 2009. The Pufels/Bulla Road Section:Deciphering Environmental Changes across the Permian-Triassic Boundary to the Olenekian by Integrated Litho-, Magneto-and Isotope Stratigraphy:A Field Trip Guide. Geo. Alp., 6:116-132
    Brandner, R., Horacek, M., Keim, L., 2012. Permian-Triassic-Boundary and Lower Triassic in the Dolomites, Southern Alps (Italy). Field Trip Guide 29th IAS Meeting of Sedimentology Schladming/Austria. Jour-nal of Alpine Geology, 54:379-404 doi: 10.1007/BF02536874
    Broglio Loriga, C., Masetti, D., Neri, C., 1983. La formazione di Werfen (Scitico) Delle Dolomiti Occidental:Sedimentologia e Biostratigrafia. Riv. Ital. Paleont. Strat., 88:501-598
    Broglio Loriga, C., Neri, C., Posenato, R., 1986. The Lower Triassic of the Dolomites and Cadore. In: Italian IGCP 203 Group, Permian and Permian-Triassic Boundary in the South-Alpine Segment of the West-ern Tethys: Field-Guide Book. Soc. Geol. It. and IGCP 203 Meeting, July 4-12, 1986, Brescia. 29-34
    Broglio Loriga, C., Góczán, F., Haas, J., et al., 1990. The Lower Triassic Sequence of the Dolomites (Italy) and Transdanubian Mid-Mountains (Hungary) and Their Correlation. Memorie di Scienze Geologiche, 42:41-103 https://core.ac.uk/display/54683055
    Burchette, T. P., Wright, V. P., 1992. Carbonate Ramp Depositional Systems. Sedimentary Geology, 79(1/2/3/4):3-57. https://doi.org/10.1016/0037-0738(92)90003-a
    Chen, Y. L., Kolar-Jurkovšek, T., Jurkovšek, B., et al., 2016. Early Triassic Conodonts and Carbonate Carbon Isotope Record of the Idrija-Žiri Area, Slovenia. Palaeogeography, Palaeoclimatology, Palaeoecology, 444:84-100. https://doi.org/10.1016/j.palaeo.2015.12.013
    Chorowitz, J., 1977. Etude Geologique des Dinarides le Long de la Structure Transverale Split-Karlovac (Yugoslavie). Societé Gêologique du Nord, 1:3-331
    Clarkson, M. O., Richoz, S., Wood, R. A., et al., 2013. A New High-Resolution δ13C Record for the Early Triassic:Insights from the Arabian Platform. Gondwana Research, 24(1):233-242. https://doi.org/10.1016/j.gr.2012.10.002
    De Zanche, V., Farabegoli, E., Mietto, P., et al., 1980. Le Unità Litostratigrafiche al Limite Scitico-Anisico nel Recoarese (Prealpi Vicente). Mem. Sci. Geol., 34:195-204
    De Zanche, V., Gianolla, P., Mietto, P., et al., 1993. Triassic Sequence Stratigraphy in the Dolomites (Italy). Mem. Sci. Geol., 45:1-27 http://www.academia.edu/1170671/Triassic_sequence_stratigraphy_in_the_Dolomites_Italy_
    Duke, W. L., 1990. Geostrophic Circulation or Shallow Marine Turbidity Currents? the Dilemma of Paleoflow Patterns in Strom-Influenced Prograding Shoreline Systems. Journal of Sedimentary Research, 60(6):870-883. https://doi.org/10.1306/d4267636-2b26-11d7-8648000102c1865d
    Đurđanović, Ž., 1967. The Lower Triassic of the Gorski Kotar Region. Geol. Vjesnik, 20:107-110 https://www.researchgate.net/publication/281538378_The_Lower_Triassic_shallow_marine_succession_in_Gorski_Kotar_region_External_Dinarides_Croatia_Lithofacies_and_conodont_dating
    Farabegoli, E., Perri, M. C., 1998. Permian/Triassic Boundary and Early Triassic of the Bulla Section (Southern Alps, Italy): Lithostratigraphy, Facies and Conodont Biostratigraphy. In: Perri, M. C., Spalletta, C., eds., Southern Alps Field Trip Guidebook. ECOS Ⅶ. Giornale di Geologia (Spec. Issue), 60: 292-310
    Flügel, E., 1982. Evolution of Triassic Reefs:Current Concepts and Problems. Facies, 6(1):297-327. https://doi.org/10.1007/bf02536687
    Goldring, R., Bridges, P., 1973. Sublitoral Sand Sheets. Jour. Sed. Petrology, 43:736-747
    Golubić, V., 2000. Biostratigraphic Distribution of Upper Scythian Ammonites in the Reference Area of Muć Gornji Village, Croatia. Natura Croatica, 9:237-274
    Grasby, S. E., Beauchamp, B., Embry, A., et al., 2012. Recurrent Early Triassic Ocean Anoxia. Geology, 41(2):175-178. https://doi.org/10.1130/g33599.1
    Grimani, I., Šikić, K., Šimunić, A., 1972. Osnovna Geološka Karta SFRJ, 1: 100 000, List Knin. (Basic Geologic Map SFRJ). Institut za Geološka Istraživanja Zagreb, Savezni Geol. Zavod Beograd.
    Grimani, I., Šikić, K., Šimunić, A., 1975. Osnovna Geološka Karta SFRJ, 1: 100 000, Tumač za List Knin (Basic Geologic Map SFRJ Explanatory Notes to Geological Map——Knin; Abs: Geology of the Knin Sheet). Institut za Geološka Istraživanja Zagreb, Savezni Geol. Zavod Beograd. 61
    Gwinner, M. P., 1971. Geologie der Alpen——Stratigraphie, Pläogeographie, Tektonik. Schweizerbartsche Verlagsbuchhandlung, Stuttgart. 477
    Haas, J., Kovács, S., Krystyn, L., et al., 1995. Significance of Late Permian-Triassic Facies Zones in Terrane Reconstructions in the Alpine-North Pannonian Domain. Tectonophysics, 242(1/2):19-40. https://doi.org/10.1016/0040-1951(94)00157-5
    Haas, J., Hips, K., Pelikán, P., et al., 2004. Facies Analysis of Marine Permian/Triassic Boundary Sections in Hungary. Acta Geologica Hungarica, 47(4):297-340. https://doi.org/10.1556/ageol.47.2004.4.1
    Haas, J., Demény, A., Hips, K., et al., 2007. Biotic and Environmental Changes in the Permian-Triassic Boundary Interval Recorded on a Western Tethyan Ramp in the Bükk Mountains, Hungary. Global and Planetary Change, 55(1/2/3):136-154. https://doi.org/10.1016/j.gloplacha.2006.06.010
    Haq, B. U., Hardenbol, J., Vail, P. R., 1987. Chronology of Fluctuating Sea Levels since the Triassic. Science, 235(4793):1156-1167. https://doi.org/10.1126/science.235.4793.1156
    Heckel, P. H., 1974. Carbonate Buildups in the Geological Record: A Review. In: Laporte, L. F., ed., Reef in Time and Space. Soc. Econ. Paleontol. Mineral. (Spec. Publ. ), 18: 90-154
    Herak, M., 1973. Some Teclonical Problems of the Evaporitic Area in the Dinarides of Croatia. Geol. Vjesnik, 26:29-40 doi: 10.1007/BF03175658
    Herak, M. 1986. A New Concept of Geotectonics of the Dinarides. Acta Geologica, 16(1):1-42
    Herak, M., Šćavničar, B., Šušnjara, A., et al., 1983. Neue Beiträge zur Biostratigraphie der Tethys-Trias. Lower Triassic of Muć. Proposal for standard section of the European Upper Scythian. Schr. Erdwiss., 5, 93-106.
    Hine, C. A., 1977. Lily Bank, Bahamas:History of an Active Oolite Sand Shoal. SEPM Journal of Sedimentary Research, 47:1554-1583. https://www.mendeley.com/research-papers/lily-bank-bahamas-history-active-oolite-sand-shoal/
    Hips, K., Pálikán, P., 2002. Lower Triassic Shallow Marine Succession in the Bükk Mountains, NE Hungary. Geol. Carpathica, 53(6):351-367
    Hochuli, P. A., 2016. Interpretation of "Fungal Spikes" in Permian-Triassic Boundary Sections. Global and Planetary Change, 144:48-50. https://doi.org/10.1016/j.gloplacha.2016.05.002
    Horacek, M., Brandner, R., Abart, R., 2007a. Carbon Isotope Record of the P/T Boundary and the Lower Triassic in the Southern Alps:Evidence for Rapid Changes in Storage of Organic Carbon. Palaeogeography, Palaeoclimatology, Palaeoecology, 252(1/2):347-354. https://doi.org/10.1016/j.palaeo.2006.11.049
    Horacek, M., Richoz, S., Brandner, R., et al., 2007b. Evidence for Recurrent Changes in Lower Triassic Oceanic Circulation of the Tethys:The δ13C Record from Marine Sections in Iran. Palaeogeography, Palaeoclimatology, Palaeoecology, 252(1/2):355-369. https://doi.org/10.1016/j.palaeo.2006.11.052
    Horacek, M., Koike, T., Richoz, S., 2009. Lower Triassic δ13C Isotope Curve from Shallow-Marine Carbonates in Japan, Panthalassa Realm:Confirmation of the Tethys δ13C Curve. Journal of Asian Earth Sciences, 36(6):481-490. https://doi.org/10.1016/j.jseaes.2008.05.005
    Horacek, M., Povoden, E., Richoz, S., et al., 2010. High-Resolution Carbon Isotope Changes, Litho-and Magnetostratigraphy across Permian-Triassic Boundary Sections in the Dolomites, N-Italy. New Constraints for Global Correlation. Palaeogeography, Palaeoclimatology, Palaeoecology, 290(1/2/3/4):58-64. https://doi.org/10.1016/j.palaeo.2010.01.007
    Horacek, M., Krystyn, L., Brandner, R., 2015. Significance of Platyvilosus Costatus and Foliella Gardenae as Indicators for the Dienerian-Smithian and Smithian-Spathian Boundaries, Respectively: A Study in the Dolomites (N-Italy). EGU General Assembly 2015, April 12-17, 2015, in Vienna, Austria. Geophysical Research Abstracts, 17: EGU2015-14921
    Irwin, M. L., 1965. General Theory of Epeiric Clear Water Sedimentation. AAPG Bulletin, 49:445-459 http://www.geologicacarpathica.com/browse-journal/volumes/53-6/article-69/
    Ivanović, A., Šćavničar, B., Sakač, K., et al., 1971. Stratigrafski Položaj i Petrografske Karakteristike Evaporita i klastita Okolice Drniša i Vrlike u Dalmaciji (Stratigraphic Possition and Petrographical Characteristics of the Evaporite and Clastic Deposits in the Environs of Drniš and Vrlika (Dalmatia)). Geol. Vjesnik, 24:11-33
    Ivanović, A., Sikirica, V., Sakač, K., 1978. Osnovna Geološka Karta 1: 100 000, Tumač za List Drniš K33-9 (Explanatory Notes to Geological Map-Drniš). Institut za Geološka Istraživanja Zagreb, Savezni Geol. Zavod Beograd
    James, N. P., 1984. Reefs. In: Walker, R. G., ed., Facies Models. Geosci. Canad. Repr. Ser., 1: 229-244
    Jelaska, V., Kolar-Jurkovšek, T., Jurkovšek, B., et al., 2003. Triassic Beds in the Basement of the Adriatic-Dinaric Carbonate Platform of the Svi-laja Mt. (Croatia). Geologija, 46(2):225-230. https://doi.org/10.5474/geologija.2003.019
    Johnson, H. D., Baldwin, C. T., 1996. Shallow Clastic Seas. In: Reading, H. G., ed., Sedimentary Environments: Processes, Facies and Stratigraphy, 3rd Edition. Blackwell Science Ltd., Oxford. 232-281
    Kiessling, W., 2010. Reef Expansion during the Triassic:Spread of Photosymbiosis Balancing Climatic Cooling. Palaeogeography, Palaeoclimatology, Palaeoecology, 290(1/2/3/4):11-19. https://doi.org/10.1016/j.palaeo.2009.03.020
    Kolar-Jurkovšek, T., Jurkovšek, B., 2007. First Record of Hindeodus-Isarcicella Population in Lower Triassic of Slovenia. Palaeogeography, Palaeoclimatology, Palaeoecology, 252(1/2):72-81. https://doi.org/10.1016/j.palaeo.2006.11.036
    Kolar-Jurkovšek, T., Jurkovšek, B., Aljinović, D., 2011a. Conodont Biostratigraphy and Lithostratigraphy across the Permian-Triassic Boundary at Lukač Section in Western Slovenia. Rivista Italiana di Paleontologia e Stratigrafia, 117:115-133 https://www.researchgate.net/publication/291825850_Lower_Triassic_conodont_fauna_from_Trzic_Karavanke_Mts_Slovenia
    Kolar-Jurkovšek, T., Jurkovšek, B., Aljinović, D., et al., 2011b. Stratigraphy of Upper Permian and Lower Triassic Strata of the Žiri Area (Slovenia). Geologija, 53(2):193-204. https://doi.org/10.5474/geologija.2011.015
    Kolar-Jurkovšek, T., Jurkovšek, B., 2015. Conodont Zonation of Lower Triassic Strata in Slovenia. Geologija, 58(2):155-174. https://doi.org/10.5474/geologija.2015.012
    Kolar-Jurkovšek, T., Jurkovšek, B., 2016. Conodont Zonation for the Lower Triassic of Western Tethys——A Case Study from Slovenia. The 5th International Geological Congress, August 27-September 4, 2016, Cape Town, South Africa
    Kovács, S., Sudar, M., Karamata, S., et al., 2010. Triassic Environments in the Circum-Pannonian Region Related to the Initial Neotethyan Rifting Stage. In: Vozar, J., Ebner, F., Vozárova, A., et al., eds., Variscan and Alpine Terranes of the Circum-Pannonian Region. Slovak Academy of Sciences, Geological Institute, Bratislava. 87-156
    Kreisa, R. D., 1981. Storm-Generated Sedimentary Structures in Subtidal Marine Facies with Examples from the Middle and Upper Ordovician of Southwestern Virginia. SEPM Journal of Sedimentary Research, 51:832-849 https://www.researchgate.net/publication/240778626_Storm-Generated_Sedimentary_Structures_in_Subtidal_Marine_Facies_With_Examples_from_the_Middle_and_Upper_Ordovician_of_Southwestern_Virginia
    Krainer, K., 1993. The Alpine Buntsandstein Formation of the Drau Range (Eastern Alps, Austria): Transition from Fluvial to Shallow Marine Facies. In: Lucas, S. G., Morales, M., eds., The Nonmarine Triassic. New Mexico Museum of Natural History and Science Bull., 3: 267-275
    Krystyn, L., 1974. Die Tirolites-Fauna (Ammonoidea) der Untertriassischen Werfen Schichten Europas und Iher Stratigraphische Bedeutung. Sitzberg. Oster. Akad. Wiss. Matem. -Naturw. Kl. Abt., 193(1/2/3):29-50 http://www.museocivico.rovereto.tn.it/patrimonio_abbonamenti_intermedio.jsp?area=69&ID_LINK=111098&page=2991&id_context=79158
    Krystyn, L., Balini, M., Nicora, A., 2004. Lower and Middle Triassic Stage Boundaries in Spiti. Albertiana, 30:39-53 https://www.researchgate.net/publication/261474833_Revised_Litho-_and_Sequence_Stratigraphy_of_the_Spiti_Triassic
    Krystyn, L., Đaković, M., Horacek, M., et al., 2014. Pelagically Influenced Late Permian and Early Triassic Deposits in Montenegro:Remnant of Internal Dinarid Neotethys or Paleotethys Relict? Bericht des Institutes für Erdwissenschaften der Universität Graz, 20(1):114
    Krystyn, L., Horacek, M., Brandner, R., et al., 2015. Carbon Isotopy as Major Chronostratigraphic Correlation Tool:The Early Triassic Case. Bericht des Institutes für Erdwissenschaften der Universität Graz, 21:212
    Lukasik, J. J., James, N. P., McGowran, B., et al., 2000. An Epeiric Ramp:Low-Energy, Cool-Water Carbonate Facies in a Tertiary Inland Sea, Murray Basin, South Australia. Sedimentology, 47(4):851-881 doi: 10.1046/j.1365-3091.2000.00328.x
    Mostler, H., Rossner, R., 1984. Mikrofazies ünd Palökologie Der Höheren Werfener Schichten (Untertrias) der Nördlichen Kalkalpen. Facies, 10(1):87-143. https://doi.org/10.1007/bf02536689
    Nestell, G. P., Sudar, M. N., Jovanović, D., et al., 2009. Latest Permian Foraminifers from the Vlašić Mountain Area, Northwestern Serbia. Micropaleontology, 55:495-513 https://www.researchgate.net/publication/262687149_Latest_Permian_foraminifers_from_the_Vlasi_mountain_area_northwestern_Serbia
    Nestell, G. P., Kolar-Jurkovšek, T., Jurkovšek, B., et al., 2011. Foraminifera from the Permian-Triassic Transition in Western Slovenia. Micropaleontology, 57:197-222 https://www.researchgate.net/profile/Galina_Nestell/publication/262687420_Foraminifera_from_the_Permian-Triassic_transition_in_Western_Slovenia/links/00b7d5387672898897000000/Foraminifera-from-the-Permian-Triassic-transition-in-Western-Slovenia.pdf
    Payne, J. L., Lehrmann, D. J., Wei, J. Y., et al., 2004. Large Perturbations of the Carbon Cycle during Recovery from the End-Permian Extinc-tion. Science, 305(5683):506-509. https://doi.org/10.1126/science.1097023
    Payne, J. L., Lehrmann, D. J., Wei, J., et al., 2006. The Pattern and Timing of Biotic Recovery from the End-Permian Extinction on the Great Bank of Guizhou, Guizhou Province, China. Palaios, 21(1):63-85. https://doi.org/10.2110/palo.2005.p05-12p
    Perri, M. C., 1991. Conodont Biostratigraphy of the Werfen Formation (Lower Triassic), Southern Alps, Italy. Boll. Soc. Paleont. Ital., 30(1):23-46
    Perri, M. C., Andraghetti, M., 1987. Permian-Triassic Boundary and Early Triassic Conodonts from the Southern Alps, Italy. Riv. It. Paleont. Strat., 93:291-328 http://ci.nii.ac.jp/naid/10020877495
    Perri, M. C., Farabegoli, E., 2003. Conodonts across the Permian-Triassic Boundary in the Southern Alps. Courier Forschungsinstitut Senckenberg, 245:281-313 http://paleo.cortland.edu/globaltriassic2/Bulletin%2061%20Final/41-Shooshtarizadeh%20and%20Yazdi%20(P-T%20Iran).pdf
    Posenato, R., 2008. Patterns of Bivalve Biodiversity from Early to Middle Triassic in the Southern Alps (Italy):Regional vs. Global Events. Pal-aeogeography, Palaeoclimatology, Palaeoecology, 261(1/2):145-159. https://doi.org/10.1016/j.palaeo.2008.01.006
    Pratt, B. R., James, N. P., 1986. The St George Group (Lower Ordovician) of Western Newfoundland:Tidal Flat Island Model for Carbonate Sed-imentation in Shallow Epeiric Seas. Sedimentology, 33(3):313-343. https://doi.org/10.1111/j.1365-3091.1986.tb00540.x
    Read, J. F., 1998. Phanerozoic Carbonate Ramps from Greenhouse, Transitional and Ice-House Worlds:Clues from Field and Modelling Studies. Geological Society, London, Special Publications, 149(1):107-135. https://doi.org/10.1144/gsl.sp.1999.149.01.07
    Read, J. F., Husinec, A., Cangialosi, M., et al., 2016. Climate Controlled, Fabric Destructive, Reflux Dolomitization and Stabilization Via Marine-and Synorogenic Mixed Fluids:An Example from a Large Mesozoic, Calcite-Sea Platform, Croatia. Palaeogeography, Palaeo-climatology, Palaeoecology, 449:108-126. https://doi.org/10.13039/100000001
    Reineck, H. E., Singh, I. B., 1972. Genesis of Laminated Sand and Graded Rhythmites in Storm-Sand Layers of Shelf Mud. Sedimentology, 18(1/2):123-128. https://doi.org/10.1111/j.1365-3091.1972.tb00007.x
    Retallack, G. J., 1995. Permian-Triassic Life Crisis on Land. Science, 267(5194):77-80. https://doi.org/10.1126/science.267.5194.77
    Retallack, G. J., 2005. Earliest Triassic Claystone Breccias and Soil-Erosion Crisis. Journal of Sedimentary Research, 75(4):679-695. https://doi.org/10.2110/jsr.2005.055
    Richoz, S., 2006. Stratigraphie et Variations Isotopiques du Carbone Dans le Permien Supérieur et le Trias Inferieur de Quelques Localités de la Néotéthys (Turquie, Oman et Iran). Mémoire de Géologie de Lausanne, 46:275 https://www.deepdyve.com/lp/elsevier/isotope-excursions-and-palaeotemperature-estimates-from-the-permian-KYBf9nSkNx
    Von Richthofen, F., 1860. Geognostische Beschreibung der Umgegend von Pedrazzo, St. Cassian und der Seiser Alpe in Südtirol, Gotha. 372
    Romano, C., Goudemand, N., Vennemann, T. W., et al., 2013. Climatic and Biotic Upheavals Following the End-Permian Mass Extinction. Nature Geoscience, 6(1):57-60. https://doi.org/10.1038/ngeo1667
    Rüffer, T., Zühlke, R. 1995. Sequence Stratigraphy and Sea-Level Changes in the Early to Middle Triassic of the Alps: A Global Comparison. In: Haq, B. U., ed., Sequence Stratigraphy and Depositional Response to Eustatic, Tectonic and Climatic Foreing. Kluwer, Dordrecht. 161-207
    Scotese, C. R., 2001. Atlas of Earth History. Palaeogeography, PalaeoMap Project, Arlington. 52
    Song, H. J., Tong, J. N., Xiong, Y. L., et al., 2012. The Large Increase of δ13C Carb-Depth Gradient and the End-Permian Mass Extinction. Sci-ence China Earth Sciences, 55(7):1101-1109. https://doi.org/10.1007/s11430-012-4416-1
    Stampfli, G. M., Borel, G., 2002. A Plate Tectonic Model for the Paleozoic and Mesozoic Constrained by Dynamic Plate Boundaries and Restored Synthetic Oceanic Isochrons. Earth and Planetary Science Letters, 196(1/2):17-33. https://doi.org/10.1016/s0012-821x(01)00588-x
    Stampfli, G. M., Hochard, C., Vérard, C., et al., 2013. The Formation of Pangea. Tectonophysics, 593:1-19. https://doi.org/10.1016/j.tecto.2013.02.037
    Sudar, M., Jovanović, D., Kolar-Jurkovšek, T., 2007. Late Permian Conodonts from Jadar Block (Vardar Zone, Northwestern Serbia). Geologica Carpathica, 58:145-152 https://www.researchgate.net/publication/49604716_Upper_Permian_ostracode_assemblage_from_the_Jadar_Block_Vardar_Zone_NW_Serbia
    Sudar, M. N., Chen, Y. L., Kolar-Jurkovšek, T., et al., 2014. Lower Triassic (Olenekian) Microfauna from Jadar Block (Gucevo Mt., Nw Serbia). Annales Geologiques de la Peninsule Balkanique, 75:1-15. https://doi.org/10.2298/gabp1475001s
    Sun, Y. D., Joachimski, M. M., Wignall, P. B., et al., 2012. Lethally Hot Temperatures during the Early Triassic Greenhouse. Science, 338:366-370 doi: 10.1126/science.1224126
    Sun, Y. D., Wignall, P. B., Joachimski, M. M., et al., 2015. High Amplitude Redox Changes in the Late Early Triassic of South China and the Smithian-Spathian Extinction. Palaeogeography, Palaeoclimatology, Palaeoecology, 427:62-78. https://doi.org/10.13039/100007834
    Šćavničar, B., 1973. Casts of Salt Crystals in Clastic Rocks in the Environs of Vrlika and Knin (Dalmatia). Geol. Vjesnik, 26:155-157
    Šćavničar, B., Šušnjara, A., 1983. The Geologic Column of the Lower Triassic at Muć (Southern Croatia). Acta Geologica, 13:1-25
    Tišljar, J., 1992. Origin and Depositional Environments of the Cvaporite and Carbonate Complex (Upper Permian) from the Central Part of the Dinarides (Southern Croatia and Western Bosnia). Geol. Croatica, 45:115-127 doi: 10.1007/1-4020-4495-X_22
    Tollmann, A., 1976. Analyse des Klassischen Nordalpinen Mesozoikums. Monographie der Nördlichen Kalkalpen. Teil 2. Deuticke, Wien
    Tucker, M. E., Wright, V. P., 1990. Carbonate Sedimentology. Blackwell Science Lit., Oxford. 482
    Twitchett, R. J., 2006. The Palaeoclimatology, Palaeoecology and Palaeoenvironmental Analysis of Mass Extinction Events. Palaeogeography, Palaeoclimatology, Palaeoecology, 232(2/3/4):190-213. https://doi.org/10.1016/j.palaeo.2005.05.019
    Vlahović, I., Tišljar, J., Velić, I., et al., 2005. Evolution of the Adriatic Carbonate Platform:Palaeogeography, Main Events and Depositional Dynamics. Palaeogeography, Palaeoclimatology, Palaeoecology, 220(3/4):333-360. https://doi.org/10.1016/j.palaeo.2005.01.011
    Whiteker, J. H., McD., 1973. "Gutter Cast", a New Name for Scour-and-Fill Structures:With Examples from the Llandoverian of Ringerike and Malmoya, Southern Norway. Norsk Geologisk Tidsskrifl, 53:403-417
    Wissman, H. L., Munster, G. V., 1841. Beitrage zur Geognosie und Petrefacten-Kundes des Sudestlich Tirol's Vorzuglich der Schichten von St. Cassian. Beiträge zur Petrefactenkunde, 4:1-152
    Wright, V. P., Faulkner, T. J., 2010. Sediment Dynamics of Early Carboniferous Ramps:A Proposal. Geological Journal, 25(2):139-144. https://doi.org/10.1002/gj.3350250205
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