PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Powiadomienia systemowe
  • Sesja wygasła!
  • Sesja wygasła!
  • Sesja wygasła!
  • Sesja wygasła!
Tytuł artykułu

Środowisko sedymentacji i wczesna diageneza czarnych łupków ogniwa Passhatten (środkowy trias, Spitsbergen, Svalbard) na podstawie analizy geochemicznej

Autorzy
Treść / Zawartość
Identyfikatory
Warianty tytułu
EN
Sedimentary environment and early diagenesis of the Passhatten Member black shales (Middle Triassic, Spitsbergen, Svalbard) in the light of geochemical analysis
Języki publikacji
PL
Abstrakty
EN
Geochemical analysis of the 50 samples of the Middle Triassic black shales (organic carbon-rich siltstones) has been carried out. The black shale samples (up to 4.92 % TOC) have been collected in the stratotype profile of the Bravaisberget Formation, west Spitsbergen. In the examined profile, the black shales occur exclusively in the Passhatten Member (the lower and middle interval of the Bravaisberget Formation). Black shale samples have been analyzed in respect to degree of pyritization (DOP), isotopic composition of pyrite sulphur (34S) and organic carbon content (TOC). The main goal of the research was to examine a degree of oxygenation and dynamics of a sea-bottom environment. DOPvalues from lower section of the Passhatten Member show wide variation, ranging from 0.29 to 0.92. In upper section of the member, the obtained DOPvalues show narrower range of variations, from 0.77 to 0.98.Wide variations of DOPwere caused by temporary coexistence of oxic and anoxic bottom currents. In turn, narrow DOP variations indicate predominance of stratified water and anoxic bottom currents. DOP/34S and DOP/TOC ratios imply that syngenetic and early diagenetic pyrite precipitation during accumulation of the lower section of the Passhatten Member was controlled by availability of organic carbon and reactive iron, whereas accumulation of the member's upper section was controlled exclusively by availability of reactive iron.
Rocznik
Strony
918--926
Opis fizyczny
Bibliogr. 31 poz., rys., tab., wykr.
Twórcy
autor
Bibliografia
  • ANDERSON T.F., KRUGER J. & RAISWELL R. 1987 - C-S-Fe relationships and the isotopic composition of pyrite in the New Albany Shale of the Illinois Basin, USA. Geochim. Cosmochim. Acta, 51: 2795-2805.
  • BERNER R.A. 1970 - Sedimentary pyrite formation. Amer. J. Sci., 268: 1-23.
  • BERNER R.A. 1984 - Sedimentary pyrite formation: An update. Geochim. Cosmochim. Acta, 48: 605-615.
  • BERNER R.A. & RAISWELL R. 1984 - C/S method for distinguishing freshwater from marine sedimentary rocks. Geology, 12: 365-368.
  • BIRKENMAJER K. 1977 - Triassic sedimentary formations of the Horsund area, Spitsbergen. Stud. Geol. Pol., 51: 7-74.
  • BOESEN C. & POSTMA D. 1988 - Pyrite formation in anoxic sediments of the Baltic Sea. Amer. J. Sci., 288: 575-603.
  • BUCHAN S.H., CHALLINOR A., HARLAND W.B. & PARKER J.R. 1965 - The Triassic stratigraphy of Svalbard. Norsk Polarinstitute Skrifer, 135: 1-94.
  • CANFIELD D.E. 1989- Reactive iron in marine sediments. Geochim. Cosmochim. Acta, 53: 619-632.
  • CANFIELD D.E., RAISWELL R., WESTRICH J.T., REAVES C.M. & BERNER R.A. 1986 - The use of chromium reduction in the analysis of reduced inorganic sulphur in sediments and shales. Chem. Geol., 54: 149-155.
  • DALLMANN W.K. (ed.) 1999 - Lithostratigraphic lexicon of Svalbard. Upper Paleozoic to Quaternary bedrock. Review and recommendations for nomenclature use. Norsk Polarinstitutt, Tromsø.
  • ESPITALIE J., LAPORTE J.L., MADEC M., MARQUIS F., LEPLAT P., PAULET J. & BOUTEFEU A. 1977 - Methode rapide de characterization des roches meres de leur potential petrolier et de leur degree d'evololution. Rev. Inst. Fr. Petrol., 32: 23-42.
  • FANLO I. & AYORA C. 1998 - The evolution of the Lorraine evaporite basin: implications for the chemicals and isotope composition of the Triassic ocean. Chem. Geol., 146: 135-154.
  • FOLK R.L. 1974 - Petrology of sedimentary rocks. Hemphill, Austin, Texas.
  • FRITZ P., DRIMMIE R.J. & NOWICKI V.Y. 1974 - Preparation of sulfur dioxide for mass spectrometer analyses by combustion of sulfides with cooper oxide. Anal. Chem., 46: 164-166.
  • JØRGENSEN B.B. 1978-Acomparison of methods for the quantification of bacterial sulfate reduction in coastal marine sediments. III. Estimation from chemical and bacteriological data. Geomicrobiol. J., 1: 49-64.
  • KARCZ P. 2008 - Geneza czarnych facji triasu środkowego na Spitsbergenie na podstawie wskaźników geochemicznych. Arch. Instytutu Nauk Geologicznych PAN, Warszawa.
  • KRAJEWSKI K.P. 2000 - Phosphogenic facies and processes in the Triassic of Svalbard. Stud. Geol. Pol., 116: 7-84.
  • KRAJEWSKI K.P., KARCZ P., WOŹNY E. & MØRK A. 2007 - Type section of the Bravaisberget Formation (Middle Triassic) at Bravaisberget, western Nathorst Land, Spitsbergen, Svalbard. Pol. Polar Res., 28, 2: 79-122.
  • LEVENTHAL J.S. 1983 - An interpretation of carbon and sulfur relationships in Black Sea sediments as indicators of environments of deposition. Geochim. Cosmochim. Acta, 47: 133-137.
  • LEVENTHAL J.S. & TAYLOR C. 1990 - Comparison of methods to determine degree of pyritization. Geochim. Cosmochim. Acta, 54: 2621-2625.
  • LYONS T.W. 1997 - Sulfur isotopic trends and pathways of iron sulfide formation in upper Holocene sediments of the anoxic Black Sea. Geochim. Cosmochim. Acta, 61: 3367-3382.
  • MIDDELBURG J.J. 1991 - Organic carbon, sulfur and iron in recent semi-euxinic sediments of Kau Bay, Indonesia. Geochim. Cosmochim. Acta, 55: 815-828.
  • MØRK A. & BJORØY M. 1984 - Mesozoic source rock on Svalbard. [In:] Spencer A.M. et al. (ed.) Petroleum geology of the North European margin. Norwegian Petroleum Society, Graham & Trotman, London: 371-382.
  • MØRK A., EMBRY A.F. & WEITSCHAT W. 1989 - Triassic transgressive- regressive cycles in the Sverdrup Basin, Svalbard and the Barents Shelf. [In:] Collinson J. D. (ed.) Correlation in hydrocarbon exploration. Graham & Trotman, London: 113-130.
  • MØRK A., KNARUD R. & WORSLEY D. 1982 - Depositional and diagenetic environments of the Triassic and Lower Jurassic succession of Svalbard. [In:] Embry A.F. & Balkwill H.R. (eds.) Artic geology and geophysics. Can. Soc. Petrol. Geol. Mem., 8: 371-398.
  • PEELINA T.M. 1983 - New data on the Mesozoic stratigraphy of the Spitsbergen Archipelago. [In:] Krasil'nikow A.A. & Basov V.A. (eds.) Geology of Spitsbergen. PGO Sevmorgeo, Leningrad: 121-141.
  • RAISWELL R. & BERNER R.A. 1985 - Pyrite formation in euxinic and semi-euxinic sediment. Amer. J. Sci., 285: 710-724.
  • RAISWELL R., BOTTRELL S.H., ALBIATTY H.J. & TAN M.M. 1993 - The influence of bottom water oxygenation and reactive iron content on sulfur incorporation into bitumens from Jurassic marine shales. Amer. J. Sci., 293: 569-596.
  • RAISWELL R., BUCKLEY F., BERNER R.A. & ANDERSON T.F. 1988 - Degree of pyritization of iron as a paleoenvironmental indicator of bottom-water oxygenation. J. Sediment. Petrol., 58: 812-819.
  • ROZANOV A.G., VOLKOV I.I. & YAGODINSKAYA T.A. 1974 - Forms of iron in surface layers of Black Sea sediments. [In:] Degens E.T. & Ross D.A. (eds.) The Black Sea - geology, chemistry, biology. Amer. Assoc. Petrol. Geol. Mem., 20: 532-541.
  • ZABACK D.A. & PRATT L.M. 1992 - Isotope composition and speciation of sulfur in the Miocene Monterey Formation: reevaluation of sulfur reactions during early diagenesis in marine environments. Geochim. Cosmochim. Acta, 56: 763-774.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS6-0018-0017
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.