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dc.contributor.authorГнилко, О. М.-
dc.contributor.authorГнилко, С. Р.-
dc.contributor.authorHnylko, O.-
dc.contributor.authorHnylko, S.-
dc.date.accessioned2020-02-19T13:04:14Z-
dc.date.available2020-02-19T13:04:14Z-
dc.date.created2019-06-26-
dc.date.issued2019-06-26-
dc.identifier.citationHnylko O. Geological environments forming the eocene black-shale formation of the Silesian Nappe (Ukrainian Carpathians) / O. Hnylko, S. Hnylko // Geodynamics : scientific journal. — Lviv : Lviv Polytechnic Publishing House, 2019. — No 1 (26). — P. 60–75.-
dc.identifier.urihttps://ena.lpnu.ua/handle/ntb/45874-
dc.description.abstractДеталізувати геологічну будову та стратиграфію еоценової чорносланцевої формації Сілезького покриву, відтворити глибини та процеси її накопичення та реконструювати палеогеографію і геодинаміку еоценового Сілезького седиментаційного суббасейну. Методика. Геологічне картування, вивчення літостратиграфії та седиментологічних рис порід (елементів Боума тощо) в природних розрізах відкладів, палеобатиметричний аналіз форамініферових асоціацій. Результати. Уточнена геологічна позиція вивчених відкладів: еоценова чорносланцева формація (сойменська світа) розвинена в межах Сілезької тектонічної одиниці, а строкатокольорові палеоцен-еоценові відклади поширені по краях цієї одиниці в Розлуцькій структурі (Субсілезький покрив) та в олістостромових товщах. Встановлено, що сойменська світа складена переважно продуктами діяльності турбідитних потоків різної густини та темними до чорних геміпелагічними глинистими утвореннями. Вона накопичувалась в Сілезькому суббасейні на батиаль-абісальних глибинах нижче CCD, на що вказує поширення глибоководних аглютинованих бентосних форамініфер (асоціації “Glomospira-Haplophragmoides”, “Recurvoides”, “Glomospira”, “Rhabdammina-Reticulophragmium” і фауна “А”-типу). Сілезький суббасейн обмежували підняття – Буковецьке (відгалуження Субсілезької кордільєри) та Субсілезьке, на яких у пізньому палеоцені на батиальних глибинах вище CCD і форамініферової лізоклини утворювались пелагічні вапнисті осади, збагачені планктонними форамініферами, а в еоцені – нижче CCD – глинисті (гемі)пелагічні відклади з аглютинованими форамініферами (асоціації “Rzehakina”, “Glomospira”, “Glomospira-Karrerulina” і фауна “B”-типу та “Rhabdammina-Reticulophragmium”). В еоцені, на південно- східному клиноподібному закінченні Сілезького суббасейну існувала напівізольована глибоководна ділянка, обмежена на північному сході Субсілезьким пасмом, на південному заході – Сілезьким (Буковецьким) підняттям, а на півдні – Примармароською акреційною призмою, де циркуляція придонних насичених киснем течій була затруднена і накопичувались збагачені органікою відклади (сойменська світа). В кінці еоцену, внаслідок субдукції підфлішової основи Зовнішньокарпатського басейну, флішева товща зривалась з цієї основи, насувалась в бік платформи, тектонічно перекривала підводні пасма-кордільєри та конседиментаційно підіймалась, зумовлюючи обміління Зовнішньо- карпатського (в т. ч. Сілезького) седиментаційного басейну. Наукова новизна. Запропонована нова палеогеографчна модель накопичення чорносланцевих відкладів еоцену Сілезького покриву, відповідно якої ці відклади нагромаджувались турбідитними потоками та (гемі)пелагічним осадженням у південно- східній напівізольованій глибоководній ділянці Сілезького суббасейну, частково обмеженій припід- нятими підводними пасмами. Практична значущість. Подана геологічна характеристика еоценової чорносланцевої формації, яка може бути потенційно нафтогенеруючою. Врахування її наявності може значно розширити напрямки пошукових робіт в Карпатах.-
dc.description.abstractTo elaborate the geological structure and stratigraphy of the Eocene black shale formation of the Silesian Nappe, to recreate the depths and processes of its accumulation, and to reconstruct paleogeography and geodynamics of the Eocene sedimentatary Silesian Sub-basin. Methodology includes geological mapping, studing the lithostratigraphy and sedimentological features of the deposits (elements of Bouma sequence et al.) in a natural sedimentary succession, as well as paleobathimetric analyses of the foraminiferal assemblages. Results. The geological position of the studied sediments has been refined: the Eocene black-shale formation (Soimy Formation) developed within the Silesian Unit, and the variegated Paleocene-Eocene clayey deposits are distributed along the borders of the Silesian Unit in the Rozluch Structure (Subsilesian Nappe) and in the olistostrome strata. It is established, that the Soimy Formation is composed mainly of both products of the different density turbidity flows and the dark to black hemipelagic mud sediments. This formation was deposited in the Silesian Sub-basin at the bathyal-abyssal depths below the calcite compensation depth (CCD) which is indicated by the deepwater agglutinated foraminifera (assemblages “Glomospira-Haplophragmoides”, “Recurvoides”, “Glomospira”, “Rhabdammina-Reticulophragmium” and fauna “A”-type). The Silesian Subbasin was limited by the uplifts such as Bukovets (branch of Silesian Kordiliera) and Subsilesian ones, on which in the Late Paleocene, the pelagic calcareous sediments enriched with planktonic foraminifera were deposited at the bathyal depths above the CCD and above the foraminiferal lysokline. In the Eocene on these uplifts, the clayey (hemi)pelagic deposits with the agglutinated foraminifera (assemblages “Rzehakina”, “Glomospira”, “Glomospira-Karrerulina” and fauna “B-type and “Rhabdammina-Reticulophragmium”) were settled below the CCD. In the Eocene, on the south-eastern wedge-shaped ending of the Silesian Sub-basin, there was a semiisolated deep-water area, bounded on the northeast by the Sub-Silesian uplift, on the south-west by the Silesian (Bukovetsky) elevation, and on the south by the Fore-Marmarosh accretionary prism. Into this area, the circulation of the bottom-oxygen currents was limited and organic-enriched deposits (Soimy Formation) were deposited. At the end of Eocene, as a result of the subduction of the sedimentary basis of the Outer Carpathian Basin, the flysch strata was torn off from this basis and was thrust towards the platform and tectonically covered the submarine uplifts. Thrust movements caused the shallowing of the sedimentatary Outer Carpathian (including Silesian) Basin during the end of Eocene. Scientific novelty. A new paleogeographic model of the Eocene black shale (Soimy Formation) accumulation was proposed. According to the model, these deposits were accumulated by the turbidity flows and (hemi) pelagic sedimentation in the south-eastern semi-isolated deepwater section of the Silesian Sub-basin partly limited by uplifts. Practical Value. The geological characteristic of the Eocene black-shale formation, which may be potentially oil-generating, is given. Taking into account its availability, it can considerably expand the directions of the search of such work in the Carpathians.-
dc.format.extent60-75-
dc.language.isoen-
dc.publisherLviv Polytechnic Publishing House-
dc.relation.ispartofГеодинаміка : науковий журнал, 1 (26), 2019-
dc.relation.ispartofGeodynamics : scientific journal, 1 (26), 2019-
dc.relation.urihttp://dx.doi.org/10.7306/gq.1247-
dc.relation.urihttp://dx.doi.org/10.1016/j.gloplacha.2016.03.007-
dc.relation.urihttp://dx.doi.org/10.1016/j.gloplacha.2017.07.004-
dc.relation.urihttp://dx.doi.org/10.14241/asgp.2015.011-
dc.subjectУкраїнські Карпати-
dc.subjectСілезький покрив-
dc.subjectчорносланцева формація-
dc.subjectтурбідити-
dc.subjectUkrainian Carpathians-
dc.subjectSilesian Nappe-
dc.subjectblack-shale formation-
dc.subjectturbidites-
dc.subjectforaminifera-
dc.titleGeological environments forming the eocene black-shale formation of the Silesian Nappe (Ukrainian Carpathians)-
dc.title.alternativeГеологічні умови формування чорносланцевої формації еоцену Сілезького покриву (Українські Карпати)-
dc.typeArticle-
dc.rights.holder© Інститут геології і геохімії горючих копалин Національної академії наук України, 2019-
dc.rights.holder© Інститут геофізики ім. С. І. Субботіна Національної академії наук України, 2019-
dc.rights.holder© Національний університет «Львівська політехніка», 2019-
dc.rights.holder© O. Hnylko, S. Hnylko-
dc.contributor.affiliationІнститут геології і геохімії горючих копалин НАН України-
dc.contributor.affiliationInstitute of Geology and Geochemistry of NAS of Ukraine-
dc.format.pages16-
dc.identifier.citationenHnylko O. Geological environments forming the eocene black-shale formation of the Silesian Nappe (Ukrainian Carpathians) / O. Hnylko, S. Hnylko // Geodynamics : scientific journal. — Lviv Polytechnic Publishing House, 2019. — No 1 (26). — P. 60–75.-
dc.relation.referencesByzova, S. L., Beer, M. A. (1974). Main features of the-
dc.relation.referencestectonics of the Soviet part of the Flysch-
dc.relation.referencesCarpathians. Geotectonics, (6), 82–94. (In Russian).-
dc.relation.referencesCsontos, L., & Vörös, A. (2004). Mesozoic plate tectonic-
dc.relation.referencesreconstruction of the Carpathian region. Palaeogeography,-
dc.relation.referencesPalaeoclimatology, Palaeoecology, 210, 1–56. doi:10.1016/j.palaeo.2004.02.033-
dc.relation.referencesCurtis, J. B., Kotarba, M. J., Lewan, M. D., Wiec1aw,-
dc.relation.referencesD. (2004). Oil/source correlations in the Polish-
dc.relation.referencesFlysch Carpathians and Mesozoic basement and-
dc.relation.referencesorganic facies of the Oligocene Menilite Shales:-
dc.relation.referencesinsights from hydrous pyrolysis experiments.-
dc.relation.referencesCretaceous Symposium, Tubingen 1987 (pp. 91–120). Stuttgart: Schweizerbart’sche Verlagsbuchhandlung.-
dc.relation.referencesKuzovenko V. V. (Ed.). (2003). State Geological Map-
dc.relation.referencesof Ukraine. Scale 1: 200,000. Carpathian series.-
dc.relation.referencesSheet “Snina”: State Geological Survey. (In Ukrainian).-
dc.relation.referencesMurray, J. W. (1976). A method of determining-
dc.relation.referencesproximity of marginal seas to an ocean. Marine Geology, 22, 256–284.-
dc.relation.referencesOlszewska, B. (1984). A paleoecological interpretation-
dc.relation.referencesof the Cretaceous and Paleogene foraminifers of the-
dc.relation.referencesPolish Outer Carpathians. Biuletyn Instytutu-
dc.relation.referencesGeologicznego, 346, 7–62. (in Polish).-
dc.relation.referencesOrganic Geochemistry, 35, 1573–1596-
dc.relation.referencesOlszewska, B. (1997). Foraminiferal biostratigraphy of-
dc.relation.referencesthe Polish Outher Carpathians: a record of basin-
dc.relation.referencesgeohistory. Annales Societatis Geologorum Poloniae, 67, 325–337.-
dc.relation.referencesOszczypko, N. (2006). Late Jurassic–Miocene-
dc.relation.referencesevolution of the Outer Carpathian fold-and-thrust-
dc.relation.referencesbelt and its foredeep basin (Western Carpathians,-
dc.relation.referencesPoland). Geological Quarterly, 50 (1), 169–194.-
dc.relation.referencesPicha, F. J. and Golonka, J. (Eds.). (2005). Carpathian-
dc.relation.referencesand their foreland: Geology and hydrocarbon-
dc.relation.referencesresources. Tulsa, Oklahoma, U.S.A: AAPG Memory, 84.-
dc.relation.referencesDabagyan, N. V., Kulchitskiy, Ya. O., Kuzovenko,-
dc.relation.referencesPonomaryova, L., Hnylko, S., Lemishko, O., Kylyanda,-
dc.relation.referencesM., Marchenko, R, & Bratus, L. (2010). Some-
dc.relation.referencesaspects of the reconstruction of sedimentary-
dc.relation.referencesconditions in the Carpathian Basin on the basis of-
dc.relation.referencesthe foraminiferal study. In Report on Scientific-
dc.relation.referenceswork: O. S. Stupka, Z. M. Lyashkevych, O. M.-
dc.relation.referencesHnylko et al. Tectonic zoning of the Ukrainian-
dc.relation.referencesCarpathians in the light of modern geological-
dc.relation.referencesconcepts (No. of State Registration 0106U002035),-
dc.relation.referencespp. 75-97. Lviv. Institute of Geology and-
dc.relation.referencesV. V. & Shlapinsky, V.E. (1987). Key sections of-
dc.relation.referencesGeochemistry of Combustible Minerals of the-
dc.relation.referencesNational Academy of Sciences.-
dc.relation.referencesSachsenhofer, R. F., & Koltun, Y. V. (2012). Black-
dc.relation.referencesshales in Ukraine – A review. Marine and-
dc.relation.referencesPetroleum Geology, 31, 125–136. doi:10.1016/j.marpetgeo.2011.08.016-
dc.relation.referencesŚlączka, A. (2005). Bukowiec Ridge: a cordillera in-
dc.relation.referencesfront of the Dukla basin. Mineralica Slovaca , 3 (37), 255–256.-
dc.relation.referencesVialov, O. S., Gavura, S. P., Danysh, V. V.,-
dc.relation.referencesLeshchuch, R. J., Ponomaryova, L. D., Romaniv,-
dc.relation.referencesH. M., Tsarnenko, P. N., Tsizh, I. T. (1981).-
dc.relation.referencesthe boundary layers of Upper Eocene–Lower-
dc.relation.referencesThe History of the Geologic Development of the-
dc.relation.referencesUkrainian Carpathians. Kyiv: Naukova Dumka. (In Russian).-
dc.relation.referencesWaśkowska, A. (2015). Stratigraphy of the-
dc.relation.referencesHieroglyphic Beds with “Black Eocene” facies in-
dc.relation.referencesthe Silesian Nappe (Outer Flysch Carpathians, Poland). Annales Societatis Geologorum Poloniae, 85, 321–343. doi: http://dx.doi.org/10.14241/asgp.2015.011-
dc.relation.referencesOligocene of the southern part of Skiba, Krosno and-
dc.relation.referencesChernogora zones. Paleontologicheskiy sbornik, 24: 27–33. (In Russian).-
dc.relation.referencesGlushhenko, L. A., Zhigunova, Z. F., Kuzovenko,-
dc.relation.referencesV. V., Lozynjak, P. Ju., Temnjuk, F. P. (1980).-
dc.relation.referencesOlistostrome in the Oligocene deposits of the-
dc.relation.referencesKrosno (Silesian) zone of the Ukrainian-
dc.relation.referencesCarpathians. In: Proceeding of the XI Congress of-
dc.relation.referencesCarpathian-Balkan Geological Association.-
dc.relation.referencesLithology (pp. 55–64). Kyiv: Naukova dumka. (In Russian).-
dc.relation.referencesGlushko, V. V. & Kruglov, S. S. (Eds.). (1971).-
dc.relation.referencesGeological structure and combustible minerals of-
dc.relation.referencesthe Ukrainian Carpathians. Moscow: Nedra.-
dc.relation.referencesGradstein, F. M., Ogg, J. G., Schmitz, M. D.,-
dc.relation.referencesOgg G. M. (Eds.). (2012). The Geologic Time Scale 2012. Elsevier, 2012.-
dc.relation.referencesHaigh, D. W. (1979). Global distribution patterns for-
dc.relation.referencesmid-Cretaceous foraminiferids. Journal of Forest Research, 9, 29–40.-
dc.relation.referencesHnylko, O. (2010) On the north-eastern boundary of-
dc.relation.referencesthe Krosno tectonic Zone in the Ukrainian-
dc.relation.referencesCarpathians. Geology and geochemistry of-
dc.relation.referencescombustible minerals, 151 (2), 44–57. (In Ukrainian).-
dc.relation.referencesHnylko, O. (2011). Principles of distinguishing,-
dc.relation.referencesfeatures, classification and genesis of the-
dc.relation.referencesolistostromes and melanges of the Ukrainian-
dc.relation.referencesCarpathians. Bulletin of Lviv State University. Seria-
dc.relation.references“Geology”, 25: 20–35. (In Ukrainian).-
dc.relation.referencesHnylko, O., & Hnylko, S. (2010). On geological-
dc.relation.referencescomposition of the Smozhe Structure from the-
dc.relation.referencesKrosno Nappe of the Ukrainian Carpathians.-
dc.relation.referencesGeology and geochemistry of combustible minerals, 152–153 (3–4), 57–72. (In Ukrainian).-
dc.relation.referencesHnylko, O., & Hnylko, S. (2011). Stratigraphy and-
dc.relation.referencessedimentary environments of the Eocene flysch-
dc.relation.referencesfrom the Krosno (Silesian) Nappe of the Ukrainian-
dc.relation.referencesCarpathians. Geological Journal, 2, 12–24. (In Ukrainian).-
dc.relation.referencesHnylko, S., & Hnylko, O. (2016). Foraminiferal-
dc.relation.referencesstratigraphy and palaeobathymetry of Paleocene–-
dc.relation.referenceslowermost Oligocene deposits (Vezhany and-
dc.relation.referencesMonastyrets nappes, Ukrainian Carpathians).-
dc.relation.referencesGeological Quarterly, 60 (1), 75–103. DOI: http://dx.doi.org/10.7306/gq.1247-
dc.relation.referencesHnylko, O. M. (2000). Chaotic formation of southwestern-
dc.relation.referencespart of the Krosno Zone – the products of origin and development.-
dc.relation.referencesHnylko, O. M. (2012). Tectonic zoning of the-
dc.relation.referencesCarpathians in term`s of the terrane tectonics-
dc.relation.referencesArticle 2. The Flysch Carpathian – ancient accretionary-
dc.relation.referencesprism. Geodynamics. 14, 61–68. (In Ukrainian).-
dc.relation.referencesKaminski, M. A., Gradstein, F. M. (2005). Atlas of-
dc.relation.referencesPaleogene cosmopolitan deep-water agglutinated-
dc.relation.referencesforaminifera. Grzybowski Foundation Special Publication, 10, 1–547.-
dc.relation.referencesKaminski, M. A., Gradstein, F. M., Berggren, W. A.,-
dc.relation.referencesGeroch, S. & Beckmann, J. P. (1988). Flysch-type-
dc.relation.referencesagglutinated foraminiferal assemblages from-
dc.relation.referencesTrinidad: Taxonomy, stratigraphy ànd paleobathymetry.-
dc.relation.referencesAbhandlungen der Geologischen Bundesanstalt, 41, 155–227.-
dc.relation.referencesKaminski, M. A., Gradstein, F. M., Berggren, W. A. (1989). Paleogene benthic foraminifer biostratigraphy-
dc.relation.referencesand paleoecology at Site 647, Southern-
dc.relation.referencesLabrador Sea. Proceeding of the Ocean Drilling-
dc.relation.referencesProgram, Scientific Results, 105, 705–730.-
dc.relation.referencesKrupskyi, Yu. Z., Kurovets, I. M., Senkovskyi, Yu. M.,-
dc.relation.referencesMykhailov, V. A., Chepil, P. M., Dryhant, D. M.,-
dc.relation.referencesShlapinskyi, V. Ie., Koltun, Yu. V., Chepil, V. P.,-
dc.relation.referencesKurovets, S. S., Bodlak, V. P. (2014). Unconventional-
dc.relation.referencessources of Hydrocarbons of Ukraine.-
dc.relation.referencesBook II. Western gas-bearing region. Kyiv: Nika-Centre. (In Ukrainian).-
dc.relation.referencesKotarba, M. J., Curtis, J. B., Lewan, M. D. (2009).-
dc.relation.referencesComparison of natural gases accumulated in-
dc.relation.referencesOligocene strata with hydrous pyrolysis from-
dc.relation.referencesMenilite Shales of the Polish Outer Carpathians.-
dc.relation.referencesOrganic Geochemistry, 40, 769–783.-
dc.relation.referencesKováč, M., Plašienka, D., Ján Soták, J., Vojtko, R.,-
dc.relation.referencesOszczypko, N., Less, G., Ćosović, V., Fügenschuh,-
dc.relation.referencesB., Králiková, S. (2016). Paleogene palaeogeography-
dc.relation.referencesand basin evolution of theWestern Carpathians,-
dc.relation.referencesNorthern Pannonian domain and adjoining-
dc.relation.referencesareas. Global and Planetary Change, 140, 9–27. http://dx.doi.org/10.1016/j.gloplacha.2016.03.007-
dc.relation.referencesKováč, M., Márton, E., Oszczypko, N., Vojtko, R.,-
dc.relation.referencesHók, J., Králiková, S., Plašienka, D., Klučiar, T.,-
dc.relation.referencesHudáčková, N., Oszczypko-Clowes, M. (2017).-
dc.relation.referencesNeogene palaeogeography and basin evolution of-
dc.relation.referencesthe Western Carpathians, Northern Pannonian-
dc.relation.referencesdomain and adjoining areas. Global and Planetary-
dc.relation.referencesChange, 155, 133–154. http://dx.doi.org/10.1016/j.gloplacha.2017.07.004-
dc.relation.referencesKuhnt, W., Kaminski, M. (1989). Upper Cretaceous-
dc.relation.referencesdeep-water agglutinated benthic foraminiferal-
dc.relation.referencesassemblages from the western Mediterranean and-
dc.relation.referencesadjacent areas. In J. Wiedmann (Ed.), Cretaceous of-
dc.relation.referencesthewestern Tethys. Proceedings 3rd International-
dc.relation.referencesenByzova, S. L., Beer, M. A. (1974). Main features of the-
dc.relation.referencesentectonics of the Soviet part of the Flysch-
dc.relation.referencesenCarpathians. Geotectonics, (6), 82–94. (In Russian).-
dc.relation.referencesenCsontos, L., & Vörös, A. (2004). Mesozoic plate tectonic-
dc.relation.referencesenreconstruction of the Carpathian region. Palaeogeography,-
dc.relation.referencesenPalaeoclimatology, Palaeoecology, 210, 1–56. doi:10.1016/j.palaeo.2004.02.033-
dc.relation.referencesenCurtis, J. B., Kotarba, M. J., Lewan, M. D., Wiec1aw,-
dc.relation.referencesenD. (2004). Oil/source correlations in the Polish-
dc.relation.referencesenFlysch Carpathians and Mesozoic basement and-
dc.relation.referencesenorganic facies of the Oligocene Menilite Shales:-
dc.relation.referenceseninsights from hydrous pyrolysis experiments.-
dc.relation.referencesenCretaceous Symposium, Tubingen 1987 (pp. 91–120). Stuttgart: Schweizerbart’sche Verlagsbuchhandlung.-
dc.relation.referencesenKuzovenko V. V. (Ed.). (2003). State Geological Map-
dc.relation.referencesenof Ukraine. Scale 1: 200,000. Carpathian series.-
dc.relation.referencesenSheet "Snina": State Geological Survey. (In Ukrainian).-
dc.relation.referencesenMurray, J. W. (1976). A method of determining-
dc.relation.referencesenproximity of marginal seas to an ocean. Marine Geology, 22, 256–284.-
dc.relation.referencesenOlszewska, B. (1984). A paleoecological interpretation-
dc.relation.referencesenof the Cretaceous and Paleogene foraminifers of the-
dc.relation.referencesenPolish Outer Carpathians. Biuletyn Instytutu-
dc.relation.referencesenGeologicznego, 346, 7–62. (in Polish).-
dc.relation.referencesenOrganic Geochemistry, 35, 1573–1596-
dc.relation.referencesenOlszewska, B. (1997). Foraminiferal biostratigraphy of-
dc.relation.referencesenthe Polish Outher Carpathians: a record of basin-
dc.relation.referencesengeohistory. Annales Societatis Geologorum Poloniae, 67, 325–337.-
dc.relation.referencesenOszczypko, N. (2006). Late Jurassic–Miocene-
dc.relation.referencesenevolution of the Outer Carpathian fold-and-thrust-
dc.relation.referencesenbelt and its foredeep basin (Western Carpathians,-
dc.relation.referencesenPoland). Geological Quarterly, 50 (1), 169–194.-
dc.relation.referencesenPicha, F. J. and Golonka, J. (Eds.). (2005). Carpathian-
dc.relation.referencesenand their foreland: Geology and hydrocarbon-
dc.relation.referencesenresources. Tulsa, Oklahoma, U.S.A: AAPG Memory, 84.-
dc.relation.referencesenDabagyan, N. V., Kulchitskiy, Ya. O., Kuzovenko,-
dc.relation.referencesenPonomaryova, L., Hnylko, S., Lemishko, O., Kylyanda,-
dc.relation.referencesenM., Marchenko, R, & Bratus, L. (2010). Some-
dc.relation.referencesenaspects of the reconstruction of sedimentary-
dc.relation.referencesenconditions in the Carpathian Basin on the basis of-
dc.relation.referencesenthe foraminiferal study. In Report on Scientific-
dc.relation.referencesenwork: O. S. Stupka, Z. M. Lyashkevych, O. M.-
dc.relation.referencesenHnylko et al. Tectonic zoning of the Ukrainian-
dc.relation.referencesenCarpathians in the light of modern geological-
dc.relation.referencesenconcepts (No. of State Registration 0106U002035),-
dc.relation.referencesenpp. 75-97. Lviv. Institute of Geology and-
dc.relation.referencesenV. V. & Shlapinsky, V.E. (1987). Key sections of-
dc.relation.referencesenGeochemistry of Combustible Minerals of the-
dc.relation.referencesenNational Academy of Sciences.-
dc.relation.referencesenSachsenhofer, R. F., & Koltun, Y. V. (2012). Black-
dc.relation.referencesenshales in Ukraine – A review. Marine and-
dc.relation.referencesenPetroleum Geology, 31, 125–136. doi:10.1016/j.marpetgeo.2011.08.016-
dc.relation.referencesenŚlączka, A. (2005). Bukowiec Ridge: a cordillera in-
dc.relation.referencesenfront of the Dukla basin. Mineralica Slovaca , 3 (37), 255–256.-
dc.relation.referencesenVialov, O. S., Gavura, S. P., Danysh, V. V.,-
dc.relation.referencesenLeshchuch, R. J., Ponomaryova, L. D., Romaniv,-
dc.relation.referencesenH. M., Tsarnenko, P. N., Tsizh, I. T. (1981).-
dc.relation.referencesenthe boundary layers of Upper Eocene–Lower-
dc.relation.referencesenThe History of the Geologic Development of the-
dc.relation.referencesenUkrainian Carpathians. Kyiv: Naukova Dumka. (In Russian).-
dc.relation.referencesenWaśkowska, A. (2015). Stratigraphy of the-
dc.relation.referencesenHieroglyphic Beds with "Black Eocene" facies in-
dc.relation.referencesenthe Silesian Nappe (Outer Flysch Carpathians, Poland). Annales Societatis Geologorum Poloniae, 85, 321–343. doi: http://dx.doi.org/10.14241/asgp.2015.011-
dc.relation.referencesenOligocene of the southern part of Skiba, Krosno and-
dc.relation.referencesenChernogora zones. Paleontologicheskiy sbornik, 24: 27–33. (In Russian).-
dc.relation.referencesenGlushhenko, L. A., Zhigunova, Z. F., Kuzovenko,-
dc.relation.referencesenV. V., Lozynjak, P. Ju., Temnjuk, F. P. (1980).-
dc.relation.referencesenOlistostrome in the Oligocene deposits of the-
dc.relation.referencesenKrosno (Silesian) zone of the Ukrainian-
dc.relation.referencesenCarpathians. In: Proceeding of the XI Congress of-
dc.relation.referencesenCarpathian-Balkan Geological Association.-
dc.relation.referencesenLithology (pp. 55–64). Kyiv: Naukova dumka. (In Russian).-
dc.relation.referencesenGlushko, V. V. & Kruglov, S. S. (Eds.). (1971).-
dc.relation.referencesenGeological structure and combustible minerals of-
dc.relation.referencesenthe Ukrainian Carpathians. Moscow: Nedra.-
dc.relation.referencesenGradstein, F. M., Ogg, J. G., Schmitz, M. D.,-
dc.relation.referencesenOgg G. M. (Eds.). (2012). The Geologic Time Scale 2012. Elsevier, 2012.-
dc.relation.referencesenHaigh, D. W. (1979). Global distribution patterns for-
dc.relation.referencesenmid-Cretaceous foraminiferids. Journal of Forest Research, 9, 29–40.-
dc.relation.referencesenHnylko, O. (2010) On the north-eastern boundary of-
dc.relation.referencesenthe Krosno tectonic Zone in the Ukrainian-
dc.relation.referencesenCarpathians. Geology and geochemistry of-
dc.relation.referencesencombustible minerals, 151 (2), 44–57. (In Ukrainian).-
dc.relation.referencesenHnylko, O. (2011). Principles of distinguishing,-
dc.relation.referencesenfeatures, classification and genesis of the-
dc.relation.referencesenolistostromes and melanges of the Ukrainian-
dc.relation.referencesenCarpathians. Bulletin of Lviv State University. Seria-
dc.relation.referencesen"Geology", 25: 20–35. (In Ukrainian).-
dc.relation.referencesenHnylko, O., & Hnylko, S. (2010). On geological-
dc.relation.referencesencomposition of the Smozhe Structure from the-
dc.relation.referencesenKrosno Nappe of the Ukrainian Carpathians.-
dc.relation.referencesenGeology and geochemistry of combustible minerals, 152–153 (3–4), 57–72. (In Ukrainian).-
dc.relation.referencesenHnylko, O., & Hnylko, S. (2011). Stratigraphy and-
dc.relation.referencesensedimentary environments of the Eocene flysch-
dc.relation.referencesenfrom the Krosno (Silesian) Nappe of the Ukrainian-
dc.relation.referencesenCarpathians. Geological Journal, 2, 12–24. (In Ukrainian).-
dc.relation.referencesenHnylko, S., & Hnylko, O. (2016). Foraminiferal-
dc.relation.referencesenstratigraphy and palaeobathymetry of Paleocene–-
dc.relation.referencesenlowermost Oligocene deposits (Vezhany and-
dc.relation.referencesenMonastyrets nappes, Ukrainian Carpathians).-
dc.relation.referencesenGeological Quarterly, 60 (1), 75–103. DOI: http://dx.doi.org/10.7306/gq.1247-
dc.relation.referencesenHnylko, O. M. (2000). Chaotic formation of southwestern-
dc.relation.referencesenpart of the Krosno Zone – the products of origin and development.-
dc.relation.referencesenHnylko, O. M. (2012). Tectonic zoning of the-
dc.relation.referencesenCarpathians in term`s of the terrane tectonics-
dc.relation.referencesenArticle 2. The Flysch Carpathian – ancient accretionary-
dc.relation.referencesenprism. Geodynamics. 14, 61–68. (In Ukrainian).-
dc.relation.referencesenKaminski, M. A., Gradstein, F. M. (2005). Atlas of-
dc.relation.referencesenPaleogene cosmopolitan deep-water agglutinated-
dc.relation.referencesenforaminifera. Grzybowski Foundation Special Publication, 10, 1–547.-
dc.relation.referencesenKaminski, M. A., Gradstein, F. M., Berggren, W. A.,-
dc.relation.referencesenGeroch, S. & Beckmann, J. P. (1988). Flysch-type-
dc.relation.referencesenagglutinated foraminiferal assemblages from-
dc.relation.referencesenTrinidad: Taxonomy, stratigraphy ànd paleobathymetry.-
dc.relation.referencesenAbhandlungen der Geologischen Bundesanstalt, 41, 155–227.-
dc.relation.referencesenKaminski, M. A., Gradstein, F. M., Berggren, W. A. (1989). Paleogene benthic foraminifer biostratigraphy-
dc.relation.referencesenand paleoecology at Site 647, Southern-
dc.relation.referencesenLabrador Sea. Proceeding of the Ocean Drilling-
dc.relation.referencesenProgram, Scientific Results, 105, 705–730.-
dc.relation.referencesenKrupskyi, Yu. Z., Kurovets, I. M., Senkovskyi, Yu. M.,-
dc.relation.referencesenMykhailov, V. A., Chepil, P. M., Dryhant, D. M.,-
dc.relation.referencesenShlapinskyi, V. Ie., Koltun, Yu. V., Chepil, V. P.,-
dc.relation.referencesenKurovets, S. S., Bodlak, V. P. (2014). Unconventional-
dc.relation.referencesensources of Hydrocarbons of Ukraine.-
dc.relation.referencesenBook II. Western gas-bearing region. Kyiv: Nika-Centre. (In Ukrainian).-
dc.relation.referencesenKotarba, M. J., Curtis, J. B., Lewan, M. D. (2009).-
dc.relation.referencesenComparison of natural gases accumulated in-
dc.relation.referencesenOligocene strata with hydrous pyrolysis from-
dc.relation.referencesenMenilite Shales of the Polish Outer Carpathians.-
dc.relation.referencesenOrganic Geochemistry, 40, 769–783.-
dc.relation.referencesenKováč, M., Plašienka, D., Ján Soták, J., Vojtko, R.,-
dc.relation.referencesenOszczypko, N., Less, G., Ćosović, V., Fügenschuh,-
dc.relation.referencesenB., Králiková, S. (2016). Paleogene palaeogeography-
dc.relation.referencesenand basin evolution of theWestern Carpathians,-
dc.relation.referencesenNorthern Pannonian domain and adjoining-
dc.relation.referencesenareas. Global and Planetary Change, 140, 9–27. http://dx.doi.org/10.1016/j.gloplacha.2016.03.007-
dc.relation.referencesenKováč, M., Márton, E., Oszczypko, N., Vojtko, R.,-
dc.relation.referencesenHók, J., Králiková, S., Plašienka, D., Klučiar, T.,-
dc.relation.referencesenHudáčková, N., Oszczypko-Clowes, M. (2017).-
dc.relation.referencesenNeogene palaeogeography and basin evolution of-
dc.relation.referencesenthe Western Carpathians, Northern Pannonian-
dc.relation.referencesendomain and adjoining areas. Global and Planetary-
dc.relation.referencesenChange, 155, 133–154. http://dx.doi.org/10.1016/j.gloplacha.2017.07.004-
dc.relation.referencesenKuhnt, W., Kaminski, M. (1989). Upper Cretaceous-
dc.relation.referencesendeep-water agglutinated benthic foraminiferal-
dc.relation.referencesenassemblages from the western Mediterranean and-
dc.relation.referencesenadjacent areas. In J. Wiedmann (Ed.), Cretaceous of-
dc.relation.referencesenthewestern Tethys. Proceedings 3rd International-
dc.citation.journalTitleГеодинаміка : науковий журнал-
dc.citation.issue1 (26)-
dc.citation.spage60-
dc.citation.epage75-
dc.coverage.placenameЛьвів-
dc.subject.udc551.3.051-
dc.subject.udc551.87 (477.8)-
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