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Hydrocarbon generation and expulsion modelling of the lower Paleozoic source rocks in the Polish part of the Baltic region

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The burial history, thermal maturity, and timing of hydrocarbon generation of four source rock successions were modelled: the Middle Cambrian, the Upper Cambrian-Tremadocian, the Upper Ordovician (Caradocian) and the lower Silurian (Llandovery and Wenlock). The 1-D modelling was carried out in profiles of eight boreholes throughout the western Baltic region. Four selected boreholes are located offshore: A8-1/83, A23-1/88, B6-1/82 and B4-2A/02, and four onshore: Bialogóra 3, Dbki 3, Leba 8 and arnowiec IG 1. The thermal maturity of source rocks is the highest in the deeper buried western part of the basin and decreases from the west to the east and north-east towards the basin margins. The lower Paleozoic source rocks contain oil-prone Type-II kerogen. The modelling indicated that the onset of petroleum generation from the lower Paleozoic source rocks occurred from the Early Devonian through the early Carboniferous period. The peak of hydrocarbon generation took place from the Late Devonian to the Tournaisian. The majority of hydrocarbons generated were expelled during the latest Early Devonian and Carboniferous, and oil has not been expelled from source rock only in the eastern offshore part of the basin.
Rocznik
Strony
241--256
Opis fizyczny
Bibliogr. 22 poz., tab., wykr.
Twórcy
autor
autor
  • Faculty of Geology, Geophysics and Environmental Protection, AGH University of Science and Technology, Mickiewicza 30, PL-30-059 Kraków, Poland, kosak@agh.edu.pl
Bibliografia
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  • BMRM 1-D (2006) - BasinMod™ 1-D Reference Manual. Platte River Association, Boulder, Colorado.
  • FORBES P. L., UNGERER P., KUHFUSS A. B., RIIS F. and EGGEN S. (1991) - Compositional modelling of petroleum generation and expulsion. Trial application to as local mass balance in the Smorbukk Sor field, Haltenbanken area, Norway. Am. Ass. Petrol. Geol. Bull., 75 (5): 873-893.
  • GOLONKA J. (2009) - Phanerozoic paleoenvironment and paleolithofacies maps. Early Paleozoic. Kwart. AGH. Geologia, 35 (4): 589-654.
  • GROTEK I. (2006) - Thermal maturity of organic matter from the sedimentary cover deposits from Pomeranian part of the TESZ, Baltic Basin and adjacent area (in Polish with English summary). Pr. Państ. Inst. Geol., 186: 253-270.
  • KANEV S., MARGULIS L., BOJENSEN-KOEFOED J., WEIL W. H. and ZDANAVICIUTE O. (1994) - Oils and hydrocarbons source rocks of the Baltic syneclise. Oil & Gas J., 92 (28): 69-72.
  • KARNKOWSKI P. (2003) - Modelling of hydrocarbon generating conditions within Lower Palaeozoic strata in the western part of Baltic basin (in Polish with English summary). Prz. Geol., 51 (9): 756-763.
  • MODLIŃSKI Z. and PODHALAŃSKA T. (2010) - Outline of the lithology and depositional features of the lower Paleozoic strata in the Polish part of the Baltic region. Geol. Quart., 54 (2): 109-121.
  • NIKISHIN A. M., ZIEGLER P. A., STEPHENSON R. A., CLOETHINGH S. A. P. L., FURNE A. V., FOKI P. A., ERSHOV A. V., BOLOTOV S. N., KOROTAEV M. V., ALEKSEEV A. S., GORBACHEV V. I., SHIPILOV E. V., LANKREIJER A., BEMBINOVA E. YU. and SHALIMOV I. V. (1996) - Late Permian to Triassic history of the East European Craton: dynamics of sedimentary basin evolution. Tectonophysics, 268: 23-63.
  • POKORSKI J. (2010) - Geological section through the lower Paleozoic strata of the Polish part of the Baltic region. Geol. Quart., 54 (2): 123-130.
  • POPRAWA P. and GROTEK I. (2005) - Revealing palaeo-heat flow and paleooverpressures in the Baltic Basin from thermal maturity modelling. Miner. Soc. Poland, Spec. Pap., 26: 237-240.
  • POPRAWA P., KOSAKOWSKI P. and WRÓBEL M. (2010) - Burial and thermal history of the Polish part of the Baltic region. Geol. Quart., 54 (2): 131-142.
  • POPRAWA P., ŠLIAUPA S., STEPHENSON R. A. and LAZAUSKIENÉ J. (1999) - Late Vendian-Early Palaeozoic tectonic evolution of the Baltic basin: regional implications from subsidence analysis. Tectonophysics, 314 (1-3): 219-239.
  • SWEENEY J. J. and BURNHAM A. K. (1990) - Evaluation of a simple model of vitrinite reflectance based on chemical kinetics. Am. Ass. Petrol. Geol. Bull., 74 (10): 1559-1570.
  • UNGERER P., BEHAR F., VILLALBAM., HEUM O. R. and AUDIBERT A. (1988) - Kinetic modelling of oil cracking. Advances of Organic Geochem., 13 (4-6): 857-868.
  • Van der VOO R. (1993) - Paleomagnetism of the Atlantic, Tethys and Iapetus Oceans. Cambridge University Press, Cambridge. WIĘCŁAW D., KOTARBAM. J., KOSAKOWSKI P., KOWALSKI A. and GROTEK I. (2010a) - Habitat and hydrocarbon potential of the lower Paleozoic source rocks in the Polish part of the Baltic Basin. Geol. Quart., 54 (2): 159-182. WIĘCŁAW D., LEWAN M. D. and KOTARBAM. J. (2010b) - Estimation of hydrous-pyrolysis kinetic parameters for oil generation from Baltic Cambrian and Tremadocian source rocks with Type-II kerogen. Geol. Quart., 54 (2): 217-226.
  • WELTE D. H., HORSFIELD B. and BAKER D. R. (1997) - Petroleum and basin evolution: insights from petroleum geochemistry, geology and basin modelling. Springer Verlag, Heidelberg.
  • YALCIN M. N., LITTKE R. and SACHSENHOFER R. F. (1997) - Thermal history of sedimentary basins. In: Petroleum and Basin Evolution (eds. D. H. Welte, B. Horsfield and D. R. Baker): 71-168. Springer Verlag, Heidelberg.
  • ZDANAVICIUTE O. and LAZAUSKIENE J. (2004) - Hydrocarbon migration and entrapment in the Baltic Syneclise. Org. Geoch., 35 (4): 517-527.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS7-0002-0021
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