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Refining the granite, gneiss and schist interrelationships within the Lusatian-Izera Massif, West Sudetes, using SHRIMP U-Pb zircon analyses and new geologic data

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The eastern part of the Lusatian-Izera Massif, West Sudetes, comprises different types of gneissose rocks, collectively known as the Izera gneisses, with a subordinate component of petrographically varied mica schists. Coarse-grained gneisses and their protoliths have been dated at 515-480 Ma, but the lack of age data for other rocks has impeded accounts of their mutual relationships and, thus, the region's geological evolution. This paper reports new sensitive high-mass resolution ion microprobe (SHRIMP) U-Pb zircon data, and some new field and petrographic observations, for three representative rock types: 1) the Złotniki schist (a fine-grained quartz-albite-chlorite-sericite-biotite schist); 2) a fine-grained gneiss that grades to 'porphyroblastic' granite and which occurs on the slopes of Mt. Stóg Izerski; 3) a leucogranite found just the south of the village of Kotlina. A volcanogenic intercalation in the Złotniki Lubańskie schists developed at 560 Ma and contained xenocrystic zircons that grew in the source at 620 Ma and 600-580 Ma. The schists are interpreted as the metamorphosed equivalent of the Lusatian greywackes, which were derived from a dissected arc and deposited in a convergent-margin basin along northern peri-Gondwana. The zircons from the fine-grained gneisses yielded four age groups: 515 +- 7 Ma, 500 +- 12 Ma, 487 +- 13 Ma and 471 +- 8 Ma. Similar age groups of zircons can also be found in the coarse-grained metagranites. Rifting of Gondwana during the mid-Cambrian-early Ordovician was a protracted thermal event lasting ~30-45 m.y., with episodic attenuation of the mainland crust every ~5-10 m.y. before continental fragments finally became separated. Each episode successively promoted an increased heat flux from the mantle that facilitated melting of the crust, causing metamorphism and fusion of the Precambrian Lusatian-Izera basement and a final phase of S-type felsic magmatism. The leucogranite sample yielded zircons in two age groups, 508 +-5 Ma and 483.1 +- 3.6 Ma, with low Th/U ratios, which is interpreted as a product of an anatectic melting at deeper crustal levels. These leucogranites are in close spatial relation with belts of mica schist, which could mean that these granites used some rheologically weak zones that were introduced into the Izera pluton where large fragments of country rocks were trapped within the ~500 Ma granites.
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Tom
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67--84
Opis fizyczny
Bibliogr. 60 poz.
Twórcy
Bibliografia
  • ACHRAMOWICZ, S. & ŻELAŹNIEWICZ, A., 1998. Północ- genez. Polskie Towarzystwo Mineralogiczne - Prace Specjalne, na część bloku karkonosko-izerskiego: zapis dwóch oro- 11: 9-13. {in Polish only}
  • BARBARIN, B., 1996. Genesis of the two main types of per-aluminous granitoids. Geology, 24: 295-298.
  • BARBARIN, B., 1999. A review of the relasionships besween granitoid types, their origins and their geodynamic environments. Lithos, 46: 605-626.
  • BERG, G., 1923. Die Gesteine des Isergebirges. Jahrbuch Preu-ssiches Geologisches Landesamt, 43: 125-168.
  • BIAŁEK, D., 2003. Kadomskie podłoże Łużyc. [Cadomian basement of Lusatia]. In: Ciężkowski, W., Wojewoda, J., Żelaź-niewicz, A., (Eds.) Sudety Zachodnie: od wendu do czwartorzędu. WIND, Wrocław, 33- 40.
  • BORKOWSKA, M., 1966. Petrografia granitu Karkonoszy. (Petrographie du granite des Karkonosze). Geologia Sudtica, 2: 7-119.
  • BORKOWSKA, M., HAMEURT, J. & VIDAL, P., 1980. Oris gin and age of Izera gneisses and Rumburk granites in the Western Sudetes. Acta GeologicaPolonica, 30: 121-146.
  • CZAPLIŃSKI, W., 1998. Orthogneisses and metapelites from a polyphase tectonic zone - mesostructural versus microstructural evidence: an example from the Czerniawa Zdrój sec tion (Izera-Karkonosze Block, West Sudetes). Geologia Sudetica, 31: 93-104.
  • FRANKE, W. & ŻELAŹNIEWICZ, A., 2000. The eastern ter-minasion of the Variscides: terrane corsei ation and kines matic evol ution. In: Franke, W., Haak, U., Oncken, O, & Tanner, D. (Eds), Orogenic Processes:Quantification and Modelling in the Variscan Belt. Geological Society, London, Special Publications, 179: 63-86.
  • GEHMLICH, M., 2003. Die Cadomiden und Varisziden des Saxo-thuringischen Terranes-Geochronologie magmatischer Ereignisse. Freiberger Forschungshefte, C500, TU Bergakademie, Freiberg, 1-129.
  • GEHMLICH, M., LINNEMANN, U., TICHIMOROWA, M.,
  • LÜTZNER, H. & BOMBACH, K., 1997. Die Bestimmung des Sedimentationsalter cadomischer Krustenfragmente im Saxothuringikum durch die Einzelzirkon-Evaporations-methode. Terra Nostra, 97: 46-50.
  • HEGNER, E. & KRÖNER, A., 2000. Review of Nd isosopic data and xenocrystic and det rit al ircon ages from the pre-Variscan basement in the eastern Bohemian Massif: speculations on palinspastic reconstructions. In: Franke, W., Haak, U., Oncken, O, & Tanner, D. (Eds), Orogenic Processes: Quantification and Modelling in the Variscan Belt. Geological Society, London, Special Publications, 179: 113-129.
  • JASTRZĘBSKI, M., ŻELAŹNIEWICZ, 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.
  • KEMNITZ, H., 2007. The Lusatian greywackes, Saxo-Thurin-gia, Germany - witness to the Cadomian orogeny. In: Linnemann, U., Nance, R. D., Kraft, P., & Zulauf, G. (Eds.), The Evolution of the Reic Ocean: From Avalonian-Cadomian Active Margin to Alleghenian-Variscan Collision. Geological Society of America Special Papers, 423: 97-141.
  • KORYTOWSKI, A., DÖRR, W., & ŻELAŹNIEWICZ, A., 1993. U-Pb dati ng of (meta)granitoids in the NW Sudetes (Poland) and their bearing on tectono-stratigraphic correlation. Terra Nova, 5: 331-332.
  • KOZŁOWSKA-KOCH, M., 1965. The granite-gneisses of Izera highlands (in Polish with English summary). Archiwum mineralogiczne, 25:123-260.
  • KOZŁOWSKI, K., 1974. Łupki krystaliczne i leukogranity pasma Stara Kamienica Swieradów. [Crystalline schists and leucogranites of the Stara Kamienica-Swieradów Zdrój Belt Geologia Sudetica, 9: 7-100.
  • KOZŁOWSKI, A., 1978. Pneumatolytic and hydrothermal activity in the Karkonosze-Izera block. Acta Geologica Polonica, 28: 171-222.
  • KRONER, A., HEGNER, E., HAMMER, J., HAASE, G., BIELICKI, K. H., KRAUSS, M., & EIDAM, J., 1994. Geo-chronology and Nd-Sr systematics of Lusatian granitoids: significance for the evolution of the Variscan orogen in east-central Europe. GeologischeRundschau, 83: 357-376.
  • KRONER, A., JAECKEL, P., HEGNER, E. & OPLETAL, M., 2001. Single zircon ages and whole-rock Nd isotopic systemati cs of early Palaeozoic granitoid gneisses from the Czech and Polish Sudetes (Jizerske hory, Krknośe Mountains and Orlice-Śniżnik Complex). International Journal ofEarth Sciences, 90: 304-324.
  • LINNEMANN, U., GEHMLICH, M., TICHOMOROWA, M,. BUSCHMANN, B., NASDALA, L., JONAS, P.,
  • LUTZNER, H. & BOMBACH, K., 2000. From Cadomian subduction to Early Palaeozoic rifti ng: The evol ut ion of Saxo-Thuringia at the margin of Gondwana in the light of single zircon geochronology and basin development (central European Variscides, Germany). Geological Society, London, Special Publications, 179: 131-153.
  • LINNEMANN, U. & ROMER, R. L., 2002. The Cadomian Orogeny in Saxo-Thuringia, Germany: geochemical and Nd-Sr-Pb isotopic characterization of marginal basins with constraints to geotectonic setting and provenance. Tectono-phys ics, 352: 33-64.
  • LINNEMANN, U., MCNAUGHTON, N. J., ROMER, R. L., GEHMLICH, M., DROST, K. & TONK, C. H., 2004.West African provenance for Saxo-Thuringia (Bohemian Massif): Did Armorica ever leave pre-Pangean Gondwana? -U/Pb-SHRIMP zircon evidence and the Nd-isotopic record. International Journal ofEarth Sciences, 93: 683-705.
  • LINNEMANN, U., GERDES, A., DROST, K. & BUSCHMANN, B., 2007. The continuum between Cadomian Orogenesis and opening of the Rheic Ocean: Constraints from LA-ICP-MS U-Pb zircon dati ng and analys is of plate-tectonic setting (Saxo-Thuringian zone, NE Bohemian massif, Germany). In: Linnemann, U., Nance, D., Kraft. P. & Zulauf, G. (eds). The Evolution of the Rheic Ocean: From Avalonian-Cadomian Active Margin to Alleghenian-Variscan Collision. Geological Society of America, Special Paper, 423: 61-69.
  • LUDWIG, K. R., 2001. SQUID 1.02, A User's Manual. A Geo chronological Toolkit for Microsoft Excel. Berkeley Geochronology Center Special Publication, 2,
  • LUDWIG, K. R., 2005. ISOPLOT/EX rev. 3.32: A GeochronoL ogical toolkit for Microsoft Excel. Berke ley Geo chron ology Center Special Publication, 4.
  • MILEWICZ, J., SZAŁAMACHA, J. & SZAŁAMACHA, M., 1979. Mapa Geologiczna Polski, 1:200000, sheet Jelenia Góra. Wydawnictwa Geologiczne, Warszawa. {in Polish only}
  • OLIVER, G. J. H., CORFU, F. & KROGH, T. E., 1993. U-Pb ages from SW Pol and: evi dence for a Cale donian sut ure zone between Baltica and Gondwana. Journal of the Geological Society, London, 150: 355-369.
  • OBERC, J., 1958. Izerska seria suprakrustalna. Przegląd Geologiczny, 6: 389. {in Polish only}
  • OBERC, J. 1972. Budowa geologiczna Polski, T. 4, Tektonika. Cz. 2, Sudety i obszary przylegle. Wydawnictwa Geologiczne, 5-307. {in Polish only}
  • OBERC-DZIEDZIC, T., 1988. Rozwój gnejsów i granitów we wschodniej części krystaliniku izerskiego w świetle badań tekstury. [The development of gneisses and granites in the eastern part of the Izera crystalline unit in the light of textural investigations] Acta Universitatis Wratislaviensis 997; Prace Geologiczno-Mineralogiczne, 13: 1-184.
  • OBERC-DZIEDZIC, T., 2003. Granity izerskie: próba odtworzenia przeddeformacyjnej historii. [The Izera grankes: an attempt of the reconstruction of predeformational history] In: Ciężkowski, W., Wojewoda, J., Żelaźniewicz, A., (Eds.) Sudety Zachodnie: od wendu do czwartorzędu. WIND, Wrocław, pp. 41-52.
  • OBERC-DZIEDZIC, T., PIN, C. & KRYZA, R., 2005. Early Palaeozoic crustal melti ng in an extensional setting: petro-logical and Sm-Nd evidence from the Izera granite-gneisses, Polish Sudetes. International Journal of Earth Sciences, 94: 354-368.
  • OBERC-DZIEDZIC, T., 2007. Early Palaezoic Izera (Rumburk) grankes from West Sudetes, Potand. Granitoids in Poland, AM Monograph 1: 101-110.
  • OBERC-DZIEDZIC, T., KRYZA, R., MOCHNACKA, K. & LARIONOV, A., 2010. Ordovician passive continental margin magmatism in the Central-European Variscides: U-Pb zircon data from the SE part of the Karkonosze-Izera Massif, Sudetes, SW Pot and. International Journal of Earth Sciences, 99: 27-46.
  • OBERC-DZIEDZIC, T., KRYZA, R., PIN, C., MOCH-NACKA, K., LARIONOV, A., 2010. Orthogneiss and schist complex of the Karkonosze-Izera Massif (Sudetes, SW Poland): U-Pb SHRIMP zircon ages, Nd-isotope systematics and protoliths. Geologia Sudetica, 41, this volume. PACES, J. B. & MILLER, J. D., 1993. Precise U-Pb ages of Du-luth Complex and rel ated mafic paleomagnetic, and tecto-nomagmatic process associated with the 1.1 Ga Midconti-nent Rift System. Journal of Geophysical Research, 98: 1399714013.
  • PIN, C., KRYZA, R., OBERC-DZIEDZIC, T., MAZUR, S., TURNIAK, K. & WALDHAUSROVA, J., 2007. The d> versity and geodynamic signifi cance of Late Cambrian (ca. 500 Ma) felsic anorogenic magmatism in the northern part of the Bohemian Massif: a review based on Sm-Nd isotope and geochemi cal data. In: Linnemann, U., Nance, R. D., Kraft, P. & Zulauf, G. (Eds.), The Evoluiion of the Rheic Ocean: From Avalonian-Cadomian Active Margin to Allegha-nian-Variscan Collision. Geological Society of America Special Papers, 423: 209-229.
  • SAWICKI, L. (Ed.), 1995. Mapa geologiczna regionu dolonoiląs-kiego z przyległymi obszarami Czech i Niemiec (bez utworów czwartorzędowych) 1:100 000. [GeologicalMap of Lower Silesia with adjacent Czech and German territories (without Quaternary deposits) 1:100 000], Państwowy Instytut Geologiczny, Warszawa.
  • SAWYER, E. W., 1999. Criteria for the recognition of partial melt ing. Phys ics and Chemistry of the Earth, (A), 24: 269-279.
  • SAWYER, E. W., 2008. Atlas of migmatites. Mineralogical Association of Canada, National Research Council Canada, 13-71.
  • SMULIKOWSKI, K., 1958. Łupki mikowe i granitognejsy na północnych zboczach Pasma Kamienickiego w Sudetach zachodnich. [Mica-schists and granite-gneisses on the northen slopes of the Kamienica mount ain-chain in Western Sudeten] Biuletyn Instytutu Geologicznego, 127: 5-31.
  • SMULIKOWSKI, W., 1972. Petrograficzne i strukturalne problemy północnej okrywy granitu Karkonoszy. [Petrogen-etic and struct ural probl ems of the northern cover of the Karkonosze granite]. Geologia Sudetica, 6: 97-188.
  • SYLVESTER, P. J., 1998. Post-collisional strongly peraluminous gran ites. Lithos, 45: 29-44.
  • SZAŁAMACHA, M., 1964. Charakterystyka bloku izerskiego jako jednostki tektonicznej. Kwartalnik geologiczny, 8: 441-442. {in Polish only}
  • SZAŁAMACHA, J., 1966. Rozwój budowy geologicznej bloku izerskiego. Z geologii Ziem Zachodnich, PWN, Wrocław, 129-137. {in Polish only}
  • SZAŁAMACHA, M. & SZAŁAMACHA, J., 1968. The meta-morphic series of the Karkonosze-Góry Izerskie Mountains Block. Biuletyn Instytutu Geologicznego, 222: 33-75.
  • SZAŁAMACHA, M. & SZAŁAMACHA, J., 1982. Szczegółowa mapa geologiczna Sudetów 1:25 000. Instytut Geologiczny, Warszawa. {in Polish only}
  • TERA, F. & WASSERBURG, G., 1972. U-Th-Pb systematics in three Apollo 14 basalts and the problem of initial Pb lunar rocks. Earth and Planetary Science Letters, 14: 281-304.
  • TERA, F., WASSERBURG, G. J., 1974. U-Th-Pb systemattcs on lunar rocks and inferences about lunar evolution and the age of the moon. In: Proceedings of the Fifth Lunar Conference (Supplement 5, Geochimica et Cosmochimica Acta), 2:1571-1599.
  • WILLIAMS, I. S., 1998. U-Th-Pb Geochronology by Ion Microprobe. In: McKibben, M. A., Shanks III, W. C. & Ridley, W. I. (Eds.), Applications of microanalytical techniques to understanding mineralizing processes. Reviews in Economic Ge-ol ogy, So ci ety of Eco nomic Ge ol o gists, 7: 1-35.
  • VERNON, R. H., 1999. Quartz and feldspar microstructures in metamorphic rocks. Canadian Mineralogist, 37: 513-524.
  • VERNON R. H. & PATERSON, S. R., 2008. How late are K-feldspar megacrysts in granites? Lithos, 104: 327- 336.
  • ŻABA, J., 1982. Klasyfikacja i nomenklatura gnejsów i granitów bloku izerskiego (Sudety Zachodnie) - propozycja. [Proposed classification and nomenclature of the gneisses and granites of the Izera block (Western Sudetes)]. Geologia Sudetica,17: 141-154.
  • ŻABA, J., 1984. Geneza oraz metamorficzna ewolucja gnejsów i granitoidów masywu Izerskiego Stogu, Sudey Zachodnie. [Genesis and metamorphic evolution of gneisses and granitoids of the Izerski Stóg Massif, Western Sudetes]. Geologia Sudetica, 19: 89-190.
  • ŻELAŹNIEWICZ, A. & ACHRAMOWICZ, S., 1998. Xenot liths of Proterozoic high-P and/or high-T metapelites within the c. 500 Ma Izera grani te, West Sudetes, SW Poland. Journal of Conference Abstracts, EUG 10, 4: 95-96.
  • ŻELAŹNIEWICZ, A. & ALEKSANDROWSKI, P., 2008. Regionalizacja tektoniczna Polski - Polska południowo-zachodnia. [Tectonic subdivision of Poland: southwestern Po land] Przegląd Geologiczny, 56: 904-911.
  • ŻELAŹNIEWICZ, A., DÓRR, W., BYLINA, P., FRANKE, W., HAACK, U., HEINISCH, H., SCHASTOK, J., GRANDMONTAGNE, K. & KULICKI, C., 2004. Theeastern continuation of the Cadomian orogen: U-Pb zircon evidence from Saxo-Thuringian granitoids in south-western Poland and the northern Czech Republic. International Journal of Earth Sciences, 93: 773-781.
  • ŻELAŹNIEWICZ, A., NOWAK, I., ACHRAMOWICZ, S. & CZAPLIŃSKI, W. 2003. Północna część bloku karko-nosko-izerskiego: historia pasywnej krawędzi terranu Saksoturyngii. [The northern part of the Karkonosze-Izera Block: a passive margin of the Saxothuringian terrane.] In: Ciężkowski, W., Wojewoda, J., Żelaźniewicz, A. (Eds.), Sudety Zachodnie: od wendu do czwartorzędu, WIND,Wrocław, 7-15.
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bwmeta1.element.baztech-article-BPW9-0010-0015
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