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The CETeG 2014 excursion to crystalline basement of the Orlica–Śnieżnik Dome, the Sudetes

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
125--136
Opis fizyczny
Bibliogr. 31 poz., rys.
Twórcy
  • Instytut Nauk Geologicznych PAN Wrocław
autor
autor
  • Uniwersytet Warszawski
autor
  • Instytut Geologi Uniwersytet A. Mickiewicza w Poznaniu
  • Uniwersytet Wrocławski
Bibliografia
  • 1. ANDERS, E. & GREVESSE, N., 1989. Abundances of the elements: meteoric and solar. Geochimica et Cosmochimica Acta, 53: 197–214.
  • 2. BHATIA, M. R. & CROOK, K. A. W., 1986. Trace element characteristics of graywackes and tectonic setting discrimination of sedimentary basins. Contribution to Mineralogy and Petrology, 92: 181–193.
  • 3. DON J., 1982. Tektonika łupków strefy Siennej oraz korelacja rozwoju gnejsów z etapami deformacji metamorfiku Śnieżnika [The Sienna Synform and the relationship of gneisses to the deformational stages distinguished in the Śnieżnik Metamorphic Massif (Sudetes)]. Geologia Sudetica, 17: 103–124.
  • 4. DON, J. & DOWIDAR, H., 1988. Goszów Quartzites and the problem of the Młynowiec Series (Śnieżnik Metamorphic Massif, Sudetes). Bulletin of the Polish Academy of Sciences, Earth Sciences, 36: 239–252.
  • 5. DON, J., 2001. The relationship between the Gierałtów migmatites and the Śnieżnik granitogneisses within the Kletno fold. Mineralogical Society of Poland – Special Papers, 19: 189– 193.
  • 6. DON, J., SKÁCEL, J, & GOTOWAŁA, R., 2003. The boundary zone of the East and West Sudetes on the 1:50 000 scale geological map of the Velké Vrbno, Staré Mìsto and Śnieżnik Metamorphic Units. Geologia Sudetica, 35: 25–59.
  • 7. FLOYD, P. A., WINCHESTER, J. A. & PARK, R. G., 1989. Geochemistry and tectonic setting of Lewisian clastic metasediments of the early Proterozoic Loch Maree Group of Gairloch, NW Scotland. Precambrian Research, 45: 203–214.
  • 8. ILNICKI, S., SZCZEPAŃSKI, J. & PIN, C., 2013. From back-arc to rifted margin: Geochemical and Nd isotopic records in Neoproterozoic?–Cambrian metabasites of the Bystrzyckie and Orlickie Mountains (Sudetes, SW Poland). Gondwana Research, 23: 1104–1121.
  • 9. JASTRZĘBSKI, M., 2009. A Variscan continental collision of the West Sudetes and the Brunovistulian terrane: a contribution from structural and metamorphic record of the Stronie Formation, the Orlica–Śnieżnik Dome, SW Poland. International Journal of Earth Sciences, 98: 1901–1923.
  • 10. JASTRZĘBSKI, M., STAWIKOWSKI, W., BUDZYŃ, B. & ORŁOWSKI, R., Migmatization and large-scale folding in the Orlica–Śnieżnik Dome, NE Bohemian Massif: Pressure– Temperature–time–deformation constraints on Variscan terrane assembly. {in review}
  • 11. JASTRZĘBSKI, M., ŻELAZNIEWICZ, A., NOWAK, I., MURTEZI, M. & LARIONOV, A. N., 2010. Protolith age and provenance of metasedimentary rocks in Variscan allochthon units: U–Pb SHRIMP zircon data from the Orlica–Śnieżnik Dome, West Sudetes, Geological Magazine, 147: 416–433.
  • 12. LINNEMANN, U. & ROMER, R. L., 2002. The Cadomian Orogeny in Saxo-Thuringia, Germany; geochemical and Nd-SrPb isotopic characterization of marginal basins with constraints to geotectonic setting and provenance. Massifs Correl. Cadomo-Avalonian Orogens 352, 33–64.
  • 13. LINNEMANN, U., PEREIRA, F., JEFFRIES, T. E., DROST, K. & GERDES, A., 2008. The Cadomian Orogeny and the opening of the Rheic Ocean: The diacrony of geotectonic processes constrained by LA-ICP-MS U-Pb zircon dating (OssaMorena and Saxo-Thuringian Zones, Iberian and Bohemian Massifs). Tectonophysics, 461: 21–43.
  • 14. MAZUR, S., SZCZEPAŃSKI, J., TURNIAK, K., MCNAUGHTON, N.J., 2012. Location of the Rheic suture in the eastern Bohemian Massif: evidence from detrital zircon data. Terra Nova, 24: 199–206.
  • 15. MAZUR, S., TURNIAK, K., SZCZEPAŃSKI, J. & MCNAUGHTON, N. J., 2013. Vestiges of Saxothuringian crust in the Central Sudetes, Bohemian Massif: Zircon evidence of a recycled subducted slab provenance. Gondwana Research, 10.1016/j.gr.2013.11.005.
  • 16. MONTEL, J. M., FORET, S., VESCHAMBRE, M., NICOLLET, C. & PROVOST, A., 1996. Electron microprobe dating of monazite. Chemical Geology, 131: 37–53.
  • 17. MURTEZI, M., 2005. Kwaśne metawulkanity w kopule orlicko śnieżnickiej: pochodzenie i ewolucja tektonometamorficzna. PhD thesis. {in Polish only}
  • 18. MURTEZI, M., 2006. The acid metavolcanic rocks of the Orlica– Śnieżnik Dome: their origin and tectono-metamorphic evolution. Geologia Sudetica, 38: 1–38.
  • 19. PEARCE J. A. & PEATE D. W., 1995. Tectonic implications of the composition of volcanic arc magmas. Earth and Planetary Science Annual Review, 23: 251–285.
  • 20. PEARCE, J. A., HARRIS, N. B. W. & TINDLE, A. G., 1984. Trace element discrimination diagrams for the tectonic interpretation of granitic rocks. Journal of Petrology, 25: 956–983.
  • 21. PEARCE, J.A., 2008. Geochemical fingerprinting of oceanic basalts with applications to ophiolite classification and the search for Archean oceanic crust. Lithos, 100: 14–48.
  • 22. REDLIŃSKA-MARCZYŃSKA, A., 2011. Gierałtów versus Śnieżnik gneisses – what is the real difference? Geologos, 17: 71–96.
  • 23. REDLIŃSKA-MARCZYŃSKA, A., 2014. Statistical analysis of a bulk chemical composition of orthogneisses, migmatites and metarhyolites from the Orlica–Śnieżnik Dome, West Sudetes. Geologia Sudetica, 42: 80–81.
  • 24. REDLIŃSKA-MARCZYŃSKA, A. & ŻELAZNIEWICZ, A., 2011. Gneisses in the Orlica–Śnieznik Dome, West Sudetes: a single batholitic protolith or a more complex origin? Acta Geologica Polonica, 61: 307–339.
  • 25. SUN S. S. & MCDONOUGH W. F., 1989. Chemical and isotopic systematics of oceanic basalts: implications for mantle compositon and processes. In: Saunders AD., Norry MJ (eds): Magmatism in ocean basins. Geol Soc London Spec Publ, 42: 313–345.
  • 26. SZCZEPAŃSKI, J., 2010. Provenance and tectonometamorphic evolution of the supracrustal series from the Bystrzyckie Mts. Crystalline Massif. Wrocławska Drukarnia Naukowa PAN.
  • 27. SZCZEPAŃSKI, J. & ILNICKI, S., 2014. From Cadomian arc to Ordovician passive margin: geochemical records preserved in metasedimentary successions of the Orlica–Śnieżnik Dome in SW Poland. International Journal of Earth Sciences, 10.1007/s00531-013-0993-2.
  • 28. TEISSEYRE, H., 1973. Geology of the Śnieżnik Mountain Group. In Smulikowski K. (ed.): Revue des probl?mes géologiques des zones profondes de l’écorce terrestre en Basse Silésie. Wydawnictwa Geologiczne,Warszawa: 59–77.
  • 29. WHALEN, J. B., CURRIE, K. L. & CHAPELL, B. W., 1987. A-type granites: Geochemical characteristics, discrimination and petrogenesis. Contributions to Mineralogy and Petrology, 95: 407–419.
  • 30. WORKMAN, R. K. & HART, S. R., 2005. Major and trace element composition of the depleted MORB mantle (DMM). Earth and Planetary Science Letters 231, 53–72.
  • 31. ŻELAZNIEWICZ, A., JASTRZĘBSKI, M., REDLIŃSKAMARCZYŃSKA, A. & SZCZEPAŃSKI, J. 2014. The Orlica–Śnieżnik Dome, the Sudetes, in 2002 and 12 years later. Geologia Sudetica, 42: 105–123
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-03705f46-2f9d-4bdc-a392-ad5f6231f4c1
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