Journal of

GEOsciences

  (Formerly Journal of the Czech Geological Society)

Original paper

Jakub Trubač, Vojtěch Janoušek, Axel Gerdes

Petrogenesis of fractionated nested granite intrusions: the Sedmihoří Composite Stock (Bohemian Massif)

Journal of Geosciences, volume 64 (2019), issue 4, 271 - 294

DOI: http://doi.org/10.3190/jgeosci.294



Ackerman L, Krňanská M, Siebel W, Strnad L (2010) Geochemistry of the Drahotín and Mutěnín intrusions, West Bohemian shear zone, Bohemian Massif: contrasting evolution of mantle-derived melts. Mineral Petrol 99: 185-199
http://doi.org/10.1007/s00710-010-0114-x

Ali-Bik (1996) Kladruby Magmatic Complex - Its Geochemistry, Petrology and Tectonic Setting. Unpublished Ph.D. thesis, Charles University, Prague, pp 1-137

Barbarin B, Didier J (1992) Genesis and evolution of mafic microgranular enclaves through various types of interaction between coexisting felsic and mafic magmas. Trans Roy Soc Edinb, Earth Sci 83: 145-153
http://doi.org/10.1017/S0263593300007835

Bonin B, Janoušek V, Moyen JF (in print) Chemical variation, modal composition and classification of granitoids. In: Janoušek V, Bonin B, Collins WJ, Farina F, Bowden P (eds) Post-Archean Granitic Rocks: Contrasting Petrogenetic Processes and Tectonic Environments. Geological Society of London Special Publications 491, DOI 10.1144/SP491-2019-138
http://doi.org/10.1144/SP491-2019-138

Boynton WV (1984) Cosmochemistry of the rare earth elements: meteorite studies. In: Henderson P (ed) Rare Earth Element Geochemistry. Elsevier, Amsterdam, pp 63-114
http://doi.org/10.1016/B978-0-444-42148-7.50008-3

Candela PA (1997) A review of shallow, ore-related granites: textures, volatiles, and ore metals. J Petrol 38: 1619-1633
http://doi.org/10.1093/petroj/38.12.1619

Cháb J, Stráník Z, Eliáš M (2007) Geological map of the Czech Republic 1: 500 000. Czech Geological Survey, Prague (in Czech)

Chappell BW (1999) Aluminium saturation in I- and S-type granites and the characterization of fractionated haplogranites. Lithos 46: 535-551
http://doi.org/10.1016/S0024-4937(98)00086-3

Chen F, Siebel W (2004) Zircon and titanite geochronology of the Fürstenstein granite massif, Bavarian Forest, NW Bohemian Massif: pulses of the late Variscan magmatic activity. Eur J Mineral 16: 777-788
http://doi.org/10.1127/0935-1221/2004/0016-0777

Dallmeyer RD, Urban M (1998) Variscan vs Cadomian tectonothermal activity in northwestern sectors of the Teplá-Barrandian Zone, Czech Republic: constraints from 40Ar/39Ar ages. Geol Rundsch 87: 94-106
http://doi.org/10.1007/s005310050192

Debon F, Le Fort P (1983) A chemical-mineralogical classification of common plutonic rocks and associations. Tr Roy Soc Edinb, Earth Sci 73: 135-149
http://doi.org/10.1017/S0263593300010117

Dempírová L (2010) The evaluation of precision and relative error of the main components of silicate analyses in Central Laboratory of the CGS. Zpr geol Výzk v Roce 2009 326-330 (in Czech)

Dodson MH (1982) On “spurious” correlations in Rb-Sr isochron diagrams. Lithos 15: 215-219
http://doi.org/10.1016/0024-4937(82)90013-5

Dörr W, Zulauf G (2010) Elevator tectonics and orogenic collapse of a Tibetan-style plateau in the European Variscides: the role of the Bohemian shear zone. Int J Earth Sci 99: 299-325
http://doi.org/10.1007/s00531-008-0389-x

Drost K (2008) Sources and geotectonic setting of Late Neoproterozoic-Early Palaeozoic volcano-sedimentary successions of the Teplá-Barrandian Unit (Bohemian Massif): evidence from petrographical, geochemical, and isotope analyses. Geol Saxon 54: 1-168

Drost K, Romer RL, Linnemann U, Fatka O, Kraft P, Marek J (2007) Nd-Sr-Pb isotopic signatures of Neoproterozoic-Early Paleozoic siliciclastic rocks in response to changing geotectonic regimes: a case study from the Barrandian area (Bohemian Massif, Czech Republic). In: Linnemann U, Nance RD, 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 Papers 423: 191-208

Dudek A (1957) Sedmihoří - dissected composite stock. Čas Čs spol zeměp 62: 206-209 (in Czech)

Finger F, Roberts MP, Haunschmid B, Schermaier A, Steyrer HP (1997) Variscan granitoids of central Europe: their typology, potential sources and tectonothermal relations. Mineral Petrol 61: 67-96
http://doi.org/10.1007/BF01172478

Finger F, Gerdes A, René M, Riegler G (2009) The Saxo-Danubian Granite Belt: magmatic response to post-collisional delamination of mantle lithosphere below the southwestern sector of the Bohemian Massif (Variscan Orogen). Geol Carpath 60: 205-212
http://doi.org/10.2478/v10096-009-0014-3

Förster HJ, Romer RL (2010) Carboniferous magmatism. In: Linnemann U, Romer RL (eds) Pre-Mesozoic Geology of Saxo-Thuringia - from the Cadomian Active Margin to the Variscan Orogen. Schweizerbart, Stuttgart, pp 287-308

Geake JE, Walker G, Telfer DJ (1977) The cause and significance of luminescence in lunar plagioclase. Philos Trans Roy Soc London A285: 403-408

Gerdes A, Zeh A (2006) Combined U-Pb and Hf isotope LA-(MC-)ICP-MS analyses of detrital zircons: comparison with SHRIMP and new constraints for the provenance and age of an Armorican metasediment in Central Germany. Earth Planet Sci Lett 249: 47-61
http://doi.org/10.1016/j.epsl.2006.06.039

Gerdes A, Zeh A (2009) Zircon formation versus zircon alteration - new insights from combined U-Pb and Lu-Hf in-situ LA-ICP-MS analyses, and consequences for the interpretation of Archean zircon from the Central Zone of the Limpopo Belt. Chem Geol 261: 230-243
http://doi.org/10.1016/j.chemgeo.2008.03.005

Hajná J, Žák J, Kachlík V, Chadima M (2012) Deciphering the Variscan tectonothermal overprint and deformation partitioning in the Cadomian basement of the Teplá-Barrandian Unit, Bohemian Massif. Int J Earth Sci 101: 1855-1873
http://doi.org/10.1007/s00531-012-0753-8

Hajná J, Žák J, Kachlík V, Dörr W, Gerdes A (2013) Neoproterozoic to early Cambrian Franciscan-type mélanges in the Teplá-Barrandian Unit, Bohemian Massif: evidence of modern-style accretionary processes along the Cadomian active margin of Gondwana? Precambr Res 224: 653-670
http://doi.org/10.1016/j.precamres.2012.11.007

Holl PK, von Drach V, Müller-Sohnius D, Köhler H (1989) Caledonian ages in Variscan rocks: Rb-Sr and Sm-Nd isotopic variations in dioritic intrusives from the northwestern Bohemian Massif, West Germany. Tectonophysics 157: 179-194
http://doi.org/10.1016/0040-1951(89)90349-1

Hoskin PWO, Kinny PD, Wyborn D, Chappell BW (2000) Identifying accessory mineral saturation during differentiation in granitoid magmas: an integrated approach. J Petrol 41: 1365-1396
http://doi.org/10.1093/petrology/41.9.1365

Irber W (1999) The lanthanide tetrad effect and its correlation with K/Rb, Eu/Eu*, Sr/Eu, Y/Ho, and Zr/Hf of evolving peraluminous granite suites. Geochim Cosmochim Acta 63: 489-508
http://doi.org/10.1016/S0016-7037(99)00027-7

Jacobsen SB, Wasserburg GJ (1980) Sm-Nd isotopic evolution of chondrites. Earth Planet Sci Lett 50: 139-155
http://doi.org/10.1016/0012-821X(80)90125-9

Janoušek V (2006) Saturnin, R language script for application of accessory-mineral saturation models in igneous geochemistry. Geol Carpathica 57: 131-142

Janoušek V, Rogers G, Bowes DR (1995) Sr-Nd isotopic constraints on the petrogenesis of the Central Bohemian Pluton, Czech Republic. Geol Rundsch 84: 520-534
http://doi.org/10.1007/BF00284518

Janoušek V, Farrow CM, Erban V (2006) Interpretation of whole-rock geochemical data in igneous geochemistry: introducing Geochemical Data Toolkit (GCDkit). J Petrol 47: 1255-1259
http://doi.org/10.1093/petrology/egl013

Janoušek V, Farrow CM, Erban V, Trubač J (2011) Brand new Geochemical Data Toolkit (GCDkit 3.0) - is it worth upgrading and browsing documentation? (Yes!). Geol Výzk Mor Slez 18: 26-30

Košler J, Konopásek J, Sláma J, Vrána S (2013) U-Pb zircon provenance of Moldanubian metasediments in the Bohemian Massif. J Geol Soc, London 171: 83-95
http://doi.org/10.1144/jgs2013-059

Kováříková P, Siebel W, Jelínek E, Štemprok M, Kachlík V, Holub FV, Blecha V (2007) Petrology, geochemistry and zircon age for redwitzite at Abertamy, NW Bohemian Massif (Czech Republic): tracing the mantle component in Late Variscan intrusions. Chem Erde 67: 151-174
http://doi.org/10.1016/j.chemer.2007.04.002

Kováříková P, Siebel W, Jelínek E, Štemprok M, Kachlík V, Holub FV, Blecha V (2010) Dioritic intrusions of the Slavkovský les (Kaiserwald), Western Bohemia: their origin and significance in late Variscan granitoid magmatism. Int J Earth Sci 99: 545-565
http://doi.org/10.1007/s00531-008-0406-0

Kularatne K, Audétat A (2014) Rutile solubility in hydrous rhyolite melts at 750-900 °C and 2 kbar, with application to titanium-in-quartz (TitaniQ) thermobarometry. Geochim Cosmochim Acta 125:196-209
http://doi.org/10.1016/j.gca.2013.10.020

Lardeaux JM, Schulmann K, Faure M, Janoušek V, Lexa O, Skrzypek E, Edel JB, Štípská P (2014) The Moldanubian Zone in French Massif Central, Vosges/Schwarzwald and Bohemian Massif revisited: differences and similarities. In: Schulmann K, Martínez Catalán JR, Lardeaux JM, Janoušek V, Oggiano G (eds) The Variscan Orogeny: Extent, Timescale and the Formation of the European Crust. Geological Society, London, Special Publications 405: 7-44
http://doi.org/10.1144/SP405.14

Liew TC, Hofmann AW (1988) Precambrian crustal components, plutonic associations, plate environment of the Hercynian Fold Belt of central Europe: indications from a Nd and Sr isotopic study. Contrib Mineral Petrol 98: 129-138
http://doi.org/10.1007/BF00402106

Ludwig KR (2003) Isoplot/Ex version 3.00. A Geochronological Toolkit for Microsoft Excel, User’s Manual. Berkeley Geochronology Center Special Publications 4, Berkeley, pp 1-70

Lugmair GW, Marti K (1978) Lunar initial 143Nd/144Nd: differential evolution of the lunar crust and mantle. Earth Planet Sci Lett 39: 349-357
http://doi.org/10.1016/0012-821X(78)90021-3

Masuda A, Kawakami O, Dohmoto Y, Takenaka T (1987) Lanthanide tetrad effects in nature: two mutually opposite types, W and M. Geochem J 21: 119-124
http://doi.org/10.2343/geochemj.21.119

Merlet C (1992) Quantitative electron probe microanalysis: new accurate φ(ρZ) description. Mikrochimica Acta 12: 107-115
http://doi.org/10.1007/978-3-7091-6679-6_8

Mielke P, Winkler HGF (1979) Eine bessere Berechnung der Mesonorm für granitische Gesteine. Neu Jb Mineral, Mh 1979: 471-480

Míková J, Denková P (2007) Modified chromatographic separation scheme for Sr and Nd isotope analysis in geological silicate samples. J Geosci 52: 221-226
http://doi.org/10.3190/jgeosci.015

Miller CF, McDowell SM, Mapes RW (2003) Hot and cold granites: implications of zircon saturation temperatures and preservation of inheritance. Geology 31: 529-532
http://doi.org/10.1130/0091-7613(2003)031<0529:HACGIO>2.0.CO;2

Millonig LJ, Gerdes A, Groat LA (2012) U-Th-Pb geochronology of meta-carbonatites and meta-alkaline rocks in the southern Canadian Cordillera: a geodynamic perspective. Lithos 152: 202-217
http://doi.org/10.1016/j.lithos.2012.06.016

Montel J-M (1993) A model for monazite/melt equilibrium and application to the generation of granitic magmas. Chem Geol 110: 127-146
http://doi.org/10.1016/0009-2541(93)90250-M

Nance RD, Murphy JB, Strachan RA, Keppie JD, Gutiérrez-Alonso G, Fernández-Suárez J, Quesada C, Linnemann U, D’Lemos RS, Pisarevsky SA (2008) Neoproterozoic-early Palaeozoic tectonostratigraphy and palaeogeography of the peri-Gondwanan terranes: Amazonian v. West African connections. In: Ennih N, Liégeois J-P (eds) The Boundaries of the West African Craton. Geological Society London Special Publications 297: 345-383
http://doi.org/10.1144/SP297.17

Nance RD, Gutiérrez-Alonso G, Keppie JD, Linnemann U, Murphy JB, Quesada C, Strachan RA, Woodcock NH (2010) Evolution of the Rheic Ocean. Gondwana Res 17:194-222
http://doi.org/10.1016/j.gr.2009.08.001

Neužilová M, Vejnar Z (1966)The geology and petrography of rocks of the Kladruby Massif. Sbor geol Věd, Geol 11: 7-31 (in Czech)

Peccerillo A, Taylor SR (1976) Contributions to mineralogy and geochemistry of Eocene calc-alkaline volcanic rocks from the Kastamonu area, northern Turkey. Contrib Mineral Petr 81: 63-81
http://doi.org/10.1007/BF00384745

Pin C, Waldhausrová J (2007) Sm-Nd isotope and trace element study of Late Proterozoic metabasalts (“spilites”) from the Central Barrandian Domain (Bohemian Massif, Czech Republic). In: Linnemann U, Nance RD, 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 Papers 423: 231-247

Pin C, Zalduegui JS (1997) Sequential separation of light rare-earth elements, thorium and uranium by miniaturized extraction chromatography: application to isotopic analyses of silicate rocks. Anal Chim Acta 339: 79-89
http://doi.org/10.1016/S0003-2670(96)00499-0

Pin C, Briot D, Bassin C, Poitrasson F (1994) Concomitant separation of strontium and samarium-neodymium for isotopic analysis in silicate samples, based on specific extraction chromatography. Anal Chim Acta 298: 209-217
http://doi.org/10.1016/0003-2670(94)00274-6

Pistone M, Blundy JD, Brooker RA (2015) Textural and chemical consequences of interaction between hydrous mafic and felsic magmas: an experimental study. Contrib Mineral Petrol 171: 1-21

Schulmann K, Konopásek J, Janoušek V, Lexa O, Lardeaux JM, Edel JB, Štípská P, Ulrich S (2009) An Andean type Palaeozoic convergence in the Bohemian Massif. C R Geosci 341: 266-286
http://doi.org/10.1016/j.crte.2008.12.006

Shand SJ (1943) Eruptive Rocks: Their Genesis, Composition, and Classification, with a Chapter on Meteorites. J. Wiley & Sons, New York, pp 1-444

Siebel W (1993) Geochronology of the Leuchtenberg granite and associated redwitzites. KTB Report 93:2, 411-416

Siebel W, Trzebski R, Stettner G, Hecht L, Casten U, Höhndorf A, Müller P (1997) Granitoid magmatism of the NW Bohemian massif revealed: gravity data, composition, age relations and phase concept. Geol Rundsch 86: 45-63
http://doi.org/10.1007/PL00014665

Siebel W, Breiter K, Wendt I, Höhndorf A, Henjes-Kunst F, René M (1999) Petrogenesis of contrasting granitoid plutons in western Bohemia (Czech Republic). Mineral Petrol 65: 207-235
http://doi.org/10.1007/BF01161961

Siebel W, Chen F, Satir M (2003) Late Variscan magmatism revisited: new implications from Pb-evaporation zircon ages on the emplacement of redwitzites and granites in NE Bavaria. Int J Earth Sci 92: 36-53
http://doi.org/10.1007/s00531-002-0305-8

Siebel W, Reitter E, Wenzel T, Blaha U (2005) Sr isotope systematics of K-feldspars in plutonic rocks revealed by the Rb-Sr microdrilling technique. Chem Geol 222: 183-199
http://doi.org/10.1016/j.chemgeo.2005.06.012

Siebel W, Thiel M, Chen F (2006) Zircon geochronology and compositional record of late- to post-kinematic granitoids associated with the Bavarian Pfahl zone (Bavarian Forest). Mineral Petrol 86: 45-62
http://doi.org/10.1007/s00710-005-0091-7

Sisson TW, Bacon CR (1999) Gas-driven filter pressing in magmas. Geology 27: 613-616
http://doi.org/10.1130/0091-7613(1999)027<0613:GDFPIM>2.3.CO;2

Sláma J, Košler J, Condon DJ, Crowley JL, Gerdes A, Hanchar JM, Horstwood MSA, Morris GA, Nasdala L, Norberg N, Schaltegger U, Schoene B, Tubrett MN, Whitehouse MJ (2008) Plešovice zircon - a new natural reference material for U-Pb and Hf isotopic microanalysis. Chem Geol 249: 1-35
http://doi.org/10.1016/j.chemgeo.2007.11.005

Smith J V, Stenstrom RC (1965) Electron-excited luminescence as a petrologic tool. J Geol 73: 627-635
http://doi.org/10.1086/627098

Steiger R, Jäger E (1977) Subcommission on geochronology: convention on the use of decay constants in geo-and cosmochronology. Earth Planet Sci Lett 36: 359-362
http://doi.org/10.1016/0012-821X(77)90060-7

Streckeisen A (1979) Classification and nomenclature of plutonic rocks. Geol Rundsch 63: 773-786
http://doi.org/10.1007/BF01820841

Streckeisen A, Le Maitre RW (1979) A chemical approximation to the modal QAPF classification of the igneous rocks. Neu Jb Mineral, Abh 136: 169-206

Sylvester PJ (1998) Post-collisional strongly peraluminous granites. Lithos 45: 29-44
http://doi.org/10.1016/S0024-4937(98)00024-3

Tanaka T, Togashi S, Kamioka H, Amakawa H, Kagami H, Hamamoto T, Yuhara M, Orihashi Y, Yoneda S, Shimizu H, Kunimaru T, Takahashi K, Yanagi T, Nakano T, Fujimaki H, Shinjo R, Asahara Y, Tanimizu M, Dragusanu C (2000) JNdi-1: a neodymium isotopic reference in consistency with LaJolla neodymium. Chem Geol 168: 279-281
http://doi.org/10.1016/S0009-2541(00)00198-4

Taubald H (2000) 207Pb/206Pb zircon ages, geochemical and isotope (Sr, Nd, O) data from redwitzites in the Fichtelgebirge, NE Bavaria. Münchner Geol Hefte A 28: 53-59

Taylor SR, McLennan SM (1995) The geochemical evolution of the continental crust. Rev Geophys 33: 241-265
http://doi.org/10.1029/95RG00262

Tomek F, Žák J, Chadima M (2015) Granitic magma emplacement and deformation during early-orogenic syn-convergent transtension: the Staré Sedlo complex, Bohemian Massif. J Geodyn 87: 50-66
http://doi.org/10.1016/j.jog.2015.02.007

Vejnar Z (1967) Petrogenetic correlation of some granitic bodies in Western Bohemia Věst Ústř Úst geol 42: 87-94 (in Czech)

Vejnar Z (1984) Magmatism In: Geology of the Domažlice Area. Czech Geological Survey, Prague, pp 48-83 (in Czech)

Verner K, Žák J, Pertoldová J, Šrámek J, Sedlák J, Trubač J, Týcová P (2009) Magmatic history and geophysical signature of a post-collisional intrusive center emplaced near a crustal-scale shear zone: the Plechý granite pluton (Moldanubian Batholith, Bohemian Massif). Int J Earth Sci 98: 517-532
http://doi.org/10.1007/s00531-007-0285-9

Villaseca C, Barbero L, Herreros V (1998) A re-examination of the typology of peraluminous granite types in intracontinental orogenic belts. Trans Roy Soc Edinburgh, Earth Sci 89: 113-119
http://doi.org/10.1017/S0263593300007045

Voves J, Bendl J, Jelínek E, Ali Bik MW (1997) Granitoids of the Kladruby pluton and the Sedmihoří stock (Western Bohemia): geochemistry and geochronology. Acta Univ Carol, Geol 41: 81-89

Vrána S, Blümel P, Petrakakis K (1995) Metamorphic evolution. In: Dallmeyer RD, Franke W, Weber K (eds) Pre-Permian Geology of Central and Eastern Europe. Springer, Berlin, pp 453-466
http://doi.org/10.1007/978-3-642-77518-5_45

Wasserburg GJ, Jacobsen SB, DePaolo DJ, McCulloch MT, Wen T (1981) Precise determination of Sm/Nd ratios, Sm and Nd isotopic abundances in standard solutions. Geochim Cosmochim Acta 45: 2311-2323
http://doi.org/10.1016/0016-7037(81)90085-5

Watson EB, Harrison TM (1983) Zircon saturation revisited: temperature and composition effects in a variety of crustal magma types. Earth Planet Sci Lett 64: 295-304
http://doi.org/10.1016/0012-821X(83)90211-X

Wendt I (1993) Isochron or mixing line? Chem Geol 104: 301-305
http://doi.org/10.1016/0009-2541(93)90159-G

Whitney DL, Evans BW (2010) Abbreviations for names of rock-forming minerals. Amer Miner 95: 185-187
http://doi.org/10.2138/am.2010.3371

Wiedenbeck M, Allé P, Corfu F, Griffin WL, Meier M, Oberli F, von Quadt A, Roddick JC, Spiegel W (1995) Three natural zircon standards for U-Th-Pb, Lu-Hf, trace element and REE analyses. Geostand Newsl 19: 1-23
http://doi.org/10.1111/j.1751-908X.1995.tb00147.x

Willmann K (1919) Die Redwitzite, eine neue Gruppe von granitischen Lamprophyren. Z Dtsch geol Gesell 71: 1-33

Zeh A, Gerdes A (2012) U-Pb and Hf isotope record of detrital zircons from gold-bearing sediments of the Pietersburg Greenstone Belt (South Africa) - is there a common provenance with the Witwatersrand Basin? Precambr Res 204-205: 46-56
http://doi.org/10.1016/j.precamres.2012.02.013

Zulauf G (1994) Ductile normal faulting along the West Bohemian Shear Zone (Moldanubian/Teplá-Barrandian boundary): evidence for late Variscan extensional collapse in the Variscan Internides. Geol Rundsch 83: 276-292
http://doi.org/10.1007/978-3-662-38521-0_6

Zulauf G, Bues C, Dörr W, Vejnar Z (2002) 10 km minimum throw along the West Bohemian shear zone: evidence for dramatic crustal thickening and high topography in the Bohemian Massif (European Variscides). Int J Earth Sci 91: 850-864
http://doi.org/10.1007/s00531-001-0250-y

Žák J, Verner K, Janoušek V, Holub FV, Kachlík V, Finger F, Hajná J, Tomek F, Vondrovic L, Trubač J (2014) A plate-kinematic model for the assembly of the Bohemian Massif constrained by structural relationships around granitoid plutons. In: Schulmann K, Martínez Catalán JR, Lardeaux JM, Janoušek V, Oggiano G (eds) The Variscan Orogeny: Extent, Timescale and the Formation of the European Crust. Geological Society London Special Publications 405: 169-196
http://doi.org/10.1144/SP405.9

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