Journal of

GEOsciences

  (Formerly Journal of the Czech Geological Society)

Original Paper

Miroslav Štemprok, David Dolejš, František V. Holub

Late Variscan calc-alkaline lamprophyres in the Krupka ore district, Eastern Krušné hory/Erzgebirge: their relationship to Sn-W mineralization

Journal of Geosciences, volume 59 (2014), issue 1, 41 - 68

DOI: http://doi.org/10.3190/jgeosci.156


  Abstract References Affiliations

Abdelfadil KM, Romer RL, Seifert T, Lobst R (2013) Calc-alkaline lamprophyres from Lusatia (Germany). Evidence for a repeatedly enriched mantle source. Chem Geol 353: 230-245
http://doi.org/10.1016/j.chemgeo.2012.10.023

Abushkevich VS, Syritso LF (2005) Composition and chemistry of dyke rocks in rare-metal Khangilai ore knot in Eastern Transbaikalia. Apatity 1: 7-9 (in Russian)

Abushkevich VS, Syritso LF (2007) Isotopic-geochemical model of the Li-F granite formation in the Khangilai ore knot in Eastern Transbaikalia. Nauka, St. Petersburg, pp 1-147 (in Russian)

Aiuppa A, Baker DR, Webster JD (2009) Halogens in volcanic systems. Chem Geol 263: 1-18
http://doi.org/10.1016/j.chemgeo.2008.10.005

Arculus RJ (2003) Use and abuse of the terms calcalkaline and calcalkalic. J Petrol 44: 929-935
http://doi.org/10.1093/petrology/44.5.929

Arevalo R jr, McDonough WF (2010) Chemical variations and regional diversity observed in MORB. Chem Geol 271: 70-85
http://doi.org/10.1016/j.chemgeo.2009.12.013

Ashley PM, Cook NDJ, Hill RL, Kent JR (1994) Shoshonitic lamprophyre dykes and their relation to mesothermal Au-Sb veins at Hillgrove, New South Wales, Australia. Lithos 32: 249-272
http://doi.org/10.1016/0024-4937(94)90043-4

Awdankiewicz M (2007) Late Palaeozoic lamprophyres and associated mafic subvolcanic rocks of the Sudetes (SW Poland): petrology, geochemistry and petrogenesis. Geol Sudetica 39: 11-117

Bali E, Audétat A, Keppler H (2011) The mobility of U and Th in subduction zone fluids: an indicator of oxygen fugacity and fluid salinity. Contrib Mineral Petrol 161: 591-613
http://doi.org/10.1007/s00410-010-0552-9

Baumann L, Kuschka E, Seifert T (2000) Lagerstätten des Erzgebirges. Enke, Stuttgart, pp 1-300

Beck R (1914) Die Zinnlagerstätten von Graupen in Böhmen. Jb Geol Reichsanst 64: 269-306

Beskin SM, Larin VN, Marin YuB (1979) Rare-Metal Granite Formations. Nedra, Leningrad, pp 1-280 (in Russian)

Bianchini G, Wilson M (1999) Tertiary-Quaternary magmatism within the Mediterranean and surrounding regions. In Durand B, Jolivet L, Horvath F, Seranne M (eds) The Mediterranean Basins: Tertiary extension within the Alpine Orogen. Geol Soc Special Pub 156: 141-168

Bonin B (1990) From orogenic to anorogenic settings: evolution of granitoid suites after a major orogenesis. Geol J 25: 261-270
http://doi.org/10.1002/gj.3350250309

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

Breiter K (2012) Nearly contemporaneous evolution of the A- and S-type fractionated granites in the Krušné hory/Erzgebirge Mts., Central Europe. Lithos 151: 105-121
http://doi.org/10.1016/j.lithos.2011.09.022

Chrt J, Malásek F (1984) Hidden upper surface of the Krušné hory granites between Cínovec and Krupka. Geol Průzk 26: 305-309 (in Czech)

Condie KC (1981) Archean Greenstone Belts. Elsevier, Amsterdam, pp 1-434

Dalmer K (1890) Erläuterungen zur geologischen Specialkarte des Königsreiches Sachsen, Section Altenberg-Zinnwald. Commision bei W. Engelmann, Leipzig, pp 1-110

Eisenreich M, Breiter K (1993) Krupka deposit of Sn-W-Mo ores in the eastern Krušné hory Mts. Věst Ústř Úst Geol 68: 15-22

Fiala F (1959) The Teplice quartz porphyry between Krupka, Cínovec, Dubí and Mikulov, and the associated rocks. Sbor Ústř Úst Geol, Ř Geol, 26: 445-478 (in Czech)

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

Foley SF, Venturelli G, Green DH, Toscani L (1987) The ultrapotassic rocks: characteristics, classification and constrains for petrological models. Earth Sci Rev 24: 81-143
http://doi.org/10.1016/0012-8252(87)90001-8

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

Förster H-J, Tischendorf G, Trumbull RB, Gottesmann B (1999) Late collisional granites in the Variscan Erzgebirge (Germany). J Petrol 40: 1613-1645
http://doi.org/10.1093/petroj/40.11.1613

Fortey NJ (1992) The Exeter volcanic rocks: geochemistry. British Geological Survey Technical Report, Mineralogy and Petrology Series WG/92/7, pp 1-45

Frost BR, Frost CD (2008) A geochemical classification for feldspathic igneous rocks. J Petrol 49: 1955-1969
http://doi.org/10.1093/petrology/egn054

Gäbert C, Beck R (1903) Erläuterungen zur geologischen Specialkarte des Königsreichs Sachsen, Blatt 120. Commision bei W. Engelman, Leipzig, pp 1-107

Gasparik T (2003) Phase Diagrams for Geoscientists. An Atlas of the Earth’s Interior. Springer, Berlin, pp 1-462
http://doi.org/10.1007/978-3-540-38352-9

Gerstenberger H (1989) Autometasomatic Rb enrichment in highly evolved granites causing lowered Rb-Sr isochron intercepts. Earth Planet Sci Lett 93: 65-75
http://doi.org/10.1016/0012-821X(89)90184-2

Grant JA (1986) The isocon diagram - a simple solution to Gresen’s equation for metasomatic alteration. Econ Geol 81: 1976-1982
http://doi.org/10.2113/gsecongeo.81.8.1976

Guo F, Fan W, Wang Y, Zhang M (2004) Origin of early Cretaceous calc-alkaline lamprophyres from the Sulu orogen in eastern China: implications for enrichment processes beneath continental collisional belts. Lithos 78: 291-305
http://doi.org/10.1016/j.lithos.2004.05.001

Halter W, Williams-Jones AE, Kontak DJ (1996) The role of greisenization in cassiterite precipitation at the East Kemptville tin deposit, Nova Scotia. Econ Geol 91: 368-395
http://doi.org/10.2113/gsecongeo.91.2.368

Hegner E, Kölbl-Ebert M, Loeschke J (1998) Postcollisional Variscan lamprophyres (Black Forest, Germany), 40Ar/39Ar phlogopite dating, Nd, Pb, Sr isotope and trace element characteristics. Lithos 45: 395-411
http://doi.org/10.1016/S0024-4937(98)00041-3

Hoffmann U, Breitkreuz C, Breiter K, Sergeev S, Stanek K, Tichomirowa M (2013) Carboniferous-Permian volcanic evolution in Central Europe - U/Pb ages of volcanic rocks in Saxony (Germany) and northern Bohemia (Czech Republic). Int J Earth Sci 102: 73-99
http://doi.org/10.1007/s00531-012-0791-2

Holub FV (2003) Ultrapotassic quartz melasyenite from Neblahov near Prachatice - geochemically anomalous lamproite rocks. Zpr geol Výzk v Roce 2002: 164-166 (in Czech)

Holub FV, Štemprok M (1999) Variscan lamprophyres and granitoid-related mineralizations: Comparison of the Krušné hory-Erzgebirge and Central Bohemian batholiths. In: Stanley C (ed) Mineral Processes: Processes to Processing. A. A. Balkema, Rotterdam, pp 365-368

Hoth K, Wasternack J, Berger H-J, Breiter K, Mlčoch B, Schovánek P (1994) Geologische Karte Erzgebirge/Vogtland 1:100 000. Sächsisches Landesamt für Umwelt und Geologie, Dresden

Hösel GA (1972) Position, Aufbau sowie tektonische Strukturen des Erzgebirges. Geologie 21: 436-456

Indolev LN (1979) Dikes in the Ore Districts of Eastern Yakutia. Nauka, Moscow, pp 1-193 (in Russian)

Irvine TN, Baragar WR (1971) A guide to the chemical classification of the common igneous rocks. Can J Earth Sci 8: 523-548
http://doi.org/10.1139/e71-055

Jahn BM, Zhang ZQ (1984) Archean granulite gneisses from eastern Hebei province, China: rare earth geochemistry and tectonic implication. Contrib Mineral Petrol 85: 224-243
http://doi.org/10.1007/BF00378102

Janečka J, Štemprok M (1967) New ore geology and petrographic data from the western part of the Krupka district. Věst Ústř Úst Geol 42: 133-136 (in Czech)

Janoušek V, Holub FV (2007) The causal link between HP-HT metamorphism and ultrapotassic magmatism in collisional orogens: case study from the Moldanubian Zone of the Bohemian Massif. Proc Geol Assoc 118: 75-86
http://doi.org/10.1016/S0016-7878(07)80049-6

Kelemen PB, Hanghøj K, Greene AR (2003) One view of the geochemistry of subduction-related magmatic arcs, with an emphasis on primitive andesite and lower crust. In: Rudnick RL (ed) The Crust. Treatise of Geochemistry 3: Elsevier, Amsterdam, pp 593-659

Kempe U, Bombach K, Matukov D, Schlothauer T, Hutschenreuther J, Wolf D, Sergeev S (2004) Pb/Pb and U/Pb zircon dating of subvolcanic rhyolite as a time marker for Hercynian granite magmatism and Sn mineralization in the Eibenstock granite, Erzgebirge, Germany: considering effects of zircon alteration. Miner Depos 39: 523-535
http://doi.org/10.1007/s00126-004-0435-y

Klemme S (2004) Evidence for fluorite melts in the Earth´s mantle formed by liquid immiscibility. Geology 32: 441-444
http://doi.org/10.1130/G20328.1

Korostelev VI (1977) Dike complex of the Upper-Khandygskii granitoid massif of granodiorites. In: Korostelev VI, Dmitriev SD, Kolodeznikov II, Savvinov NM, Tomtozov IA, Tschurbaev FI (eds) Geology and the Distribution Pattern of Resources in Yakutia. Yakutsk State University Publishing House, Yakutsk, pp 52-60 (in Russian)

Kozlov VD, Efremov SV (1999) Potassic alkali basaltoids and geochemical specialization of the associated rare-metal granites. Russ Geol Geoph 40: 973-985

Kramer W (1976) Genese der Lamprophyre im Bereich der Fichtelgebirgisch-Erzgebirgischen Antiklinalzone. Chem Erde 35: 1-49

Kramer W (1988) Magmengenetische Aspekte der Lithosphärenentwicklung. Series in Geological Sciences, Akademie Verlag, Berlin, pp 1-136

Kramer W, Seifert W (1994) Mica-lamprophyres and related volcanics of the Erzgebirge and metallogenic aspects. In: Seltmann R, Kämpf H, Möller P (eds) Metallogeny of collisional orogens. Czech Geological Survey, Prague, pp 159-165

Krmíček L (2010) Pre-Mesozoic lamprophyres and associated dyke intrusions of the Bohemian Massif (Czech Republic, Poland, Germany, Austria): a review. Acta Mus Moraviae, Sci Geol 95: 3-61 (in Czech)

Krmíček L, Cempírek J, Havlín A, Přichystal A, Houzar S, Krmíčková M, Gadaš P (2011) Mineralogy and petrogenesis of a Ba-Ti-Zr-rich peralkaline dyke from Šebkovice (Czech Republic): recognition of the most lamproitic Variscan intrusion. Lithos 121: 74-86
http://doi.org/10.1016/j.lithos.2010.10.005

Leake BE, Woolley AR, Arps CES, Birch WD, Gilbert MC, Grice JD, Hawthorne FC, Kato A, Kisch HJ, Krivovichev VG, Linthout K, Laird J, Mandarino JA, Maresch WV, Nickel EH, Rock NMS, Schumacher JC, Smith DC, Stephenson NCN, Ungaretti L, Whittaker EJW, Youzhi G (1997) Nomenclature of amphiboles. Can Mineral 35: 219-246

Leat PT, Jackson SE, Thorpe RS, Stillman CJ (1986) Geochemistry of bimodal basalt-subalkaline/peralkaline rhyolite provinces within the southern British Caledonides. J Geol Soc, London 143: 259-276
http://doi.org/10.1144/gsjgs.143.2.0259

Le Maitre RW (ed, 2002) Igneous Rocks. A Classification and Glossary of Terms. Cambridge Univ Press, Cambridge, pp 1-236
http://doi.org/10.1017/CBO9780511535581

Linnemann U (ed) (2008) Das Saxothuringikum. Abriss der präkambrischen und paläozoischen Geologie von Sachsen und Thüringen. Geol Saxon 36: 1-163

Litvinovskii B, Antipin VV, Reyf F, Kuzmin M (1995) Rare metal and palyngenetic granitoids of Transbaikalia and related mineralization. Excursion Guide. Transbaikalia Field Meeting, August 1-15, 1995. Irkutsk-Ulan Ude-Moscow, pp 1-99

Lobach-Zhuchenko SB, Chekulaev VP, Ivanikov VV, Kovalenko AV, Bogomolov ES (2000) Late Archean high-Mg and subalkaline granitoids and lamprophyres as indicators of gold mineralization in Karelia (Baltic Shield). In: Krementsky A, Lehmann B, Seltmann R (eds) Ore-bearing Granites of Russia and Adjacent Countries. IMGRE, Moscow, Intas 93-1783 Project, IGCP 373 Project, pp 193-211

Lugov SF ,Kryuchov AS, Makeev BV (1986, eds) Geology of Tin Deposits of the USSR (3 volumes). Nedra, Moscow, pp 1-332, 1-429, 1-200 (in Russian)

Luhr JF, Carmichael ISE, Varekamp JC (1984) The 1982 eruptions of El Chichon volcano, Choapas, Mexico: mineralogy and petrology of the anhydrite-bearing pumices. J Volcanol Geotherm Res 23: 69-108
http://doi.org/10.1016/0377-0273(84)90057-X

MacLean WH, Barrett JL (1993) Lithogeochemical techniques using immobile elements. J Geochem Explor 48: 109-133
http://doi.org/10.1016/0375-6742(93)90002-4

McDonough WF, Sun SS (1995) The composition of the Earth. Chem Geol 120: 223-253
http://doi.org/10.1016/0009-2541(94)00140-4

McNeil AM, Kerrich R (1986) Archean lamprophyre dikes and gold mineralization, Ontario. The conjunction of LILE-enriched magmas, deep crustal structures and gold concentrations. Can J Earth Sci 23: 324-343
http://doi.org/10.1139/e86-035

Mingram B, Kröner A, Hegner E, Krentz O (2004) Zircon ages, geochemistry and Nd isotopic systematics of pre-Variscan orthogneisses from the Erzgebirge, Saxony (Germany), and geodynamic interpretation. Int J Earth Sci 93: 706-727
http://doi.org/10.1007/s00531-004-0414-7

Mitchell RH, Bergman SC (1991) Petrology of Lamproites. Plenum Press, New York, pp 1-447

Mlčoch B, Skácelová Z (2010) Geometry of the Altenberg-Teplice caldera revealed by the borehole and seismic data in its Czech part. J Geosci 55: 217-229
http://doi.org/10.3190/jgeosci.071

Müller D, Groves DI (1993) Direct and indirect associations between potassic igneous rocks, shoshonites and gold-copper deposits. Ore Geol Rev 8: 383-406
http://doi.org/10.1016/0169-1368(93)90035-W

Müller D, Rock NMS, Groves DI (1992) Geochemical discrimination between shoshonitic and potassic volcanic rocks from different tectonic settings: a pilot study. Mineral Petrol 46: 259-289
http://doi.org/10.1007/BF01173568

Müller A, Seltmann R (2002) Plagioclase mantled K-feldspar in Carboniferous porphyritic microgranite of Altenberg and Frauenstein, Eastern Erzgebirge/Krušné hory. Bull Geol Soc Finland 74: 53-79
http://doi.org/10.17741/bgsf/74.1-2.002

Mizera J, Řanda Z (2010) Instrumental neutron and proton activation analyses of selected geochemical reference materials. J Radiol Nucl Chem 284: 157-163
http://doi.org/10.1007/s10967-010-0447-2

Novák JK (1994) Mineral associations at the Krupka (Graupen) greisenized stock. In: Seltmann R, Kämpf H, Möller P (eds) Metallogeny of the Collisional Orogens. Czech Geological Survey, Prague, pp 61-69

Novák JK, Pivec E, Holub FV, Štemprok M (2001) Greisenization of lamprophyres in the Krupka Sn-W district in the eastern Krušné hory/Erzgebirge, Czech Republic. In: Piestrzyński A (ed) Mineral Deposits at the Beginning of the 21st Century. Sweets and Zeilinger Publishers, Lisse, pp 465-488

Owen JP (2008) Geochemistry of lamprophyres from the Western Alps, Italy: implications for the origin of an enriched isotopic component in the Italian mantle. Contrib Mineral Petrol 155: 341-362
http://doi.org/10.1007/s00410-007-0246-0

Pälchen W, Wetzel HU, Lobin M, Seltmann R (1984) Spätvariszicher Magmatismus und Bruchtektonik im Osterzgebirge. 31. Jahrestagung Gesellschaft für geologische Wissenschaften, Berlin, pp 53-60

Patino LC, Carr MJ, Feigenson MD (2000) Local and regional variations in Central American arc lavas controlled by variations in subducted sedimentary input. Contrib Mineral Petrol 138: 265-283
http://doi.org/10.1007/s004100050562

Pearce JA (1983) The role of sub-continental lithosphere in magma genesis at destructive plate margins. In: Hawkesworth CJ, Norry MJ (eds) Continental Basalts and Mantle Xenoliths. Shiva, Nantwich, pp 230-249

Pietzsch K (1962) Geologie von Sachsen. Deutscher Verlag der Wissenschaften, Berlin, pp 1-870

Pivec E, Holub FV, Lang M, Novák JK, Štemprok M (2002) Rock-forming minerals of lamprophyres and associated mafic dykes from the Krušné hory/Erzgebirge (Czech Republic). J Czech Geol Soc 47: 23-32
Direct link

Plank T, Langmuir CH (1998) The chemical composition of subducting sediment and its consequences for the crust and mantle. Chem Geol 145: 325-394
http://doi.org/10.1016/S0009-2541(97)00150-2

Prelević D, Foley SF, Cvetković V, Romer RL (2004) Origin of minette by mixing of lamproite and dacite magmas in Veliki Majdan, Serbia. J Petrol 45: 759-792
http://doi.org/10.1093/petrology/egg109

Prouteau G, Scaillet B, Pichavant M, Maury R (2001) Evidence for mantle metasomatism by hydrous silicic melts derived from subducted oceanic crust. Nature 410: 197-200
http://doi.org/10.1038/35065583

Rock NMS (1991) Lamprophyres. Van Nostrand Reinhold, Glasgow, pp 1-286

Rock NMS, Groves DI, Perring CS, Golding SD (1989) Gold, lamprophyres, and porphyries: what does their association mean? Econ Geol 84: 609-625
http://doi.org/10.5382/Mono.06.47

Romer RL, Hahne K (2010) Life of the Rheic ocean: scrolling through the shale record. Gondwana Res 17: 236-253
http://doi.org/10.1016/j.gr.2009.09.004

Romer RL, Thomas R, Stein HJ, Rhede D (2007) Dating multiply overprinted Sn-mineralized granites - examples from the Erzgebirge, Germany. Miner Depos 42: 337-359
http://doi.org/10.1007/s00126-006-0114-2

Romer RL, Förster H-J, Štemprok M (2010) Age of late-Variscan magmatism in the Altenberg-Teplice Caldera (Eastern Erzgebirge/Krušné hory). Neu Jb Mineral, Abh 187: 289-305
http://doi.org/10.1127/0077-7757/2010/0179

Rudnick RL, Gao S (2003) Composition of the continental crust. In Rudnick RL (ed) The Crust. Treatise of Geochemistry 3: Elsevier, Amsterdam, pp 1-64

Rundkvist DV, Denisenko VK, Pavlova IG (1971) Greisen Deposits. Nedra, Moscow, pp 1-327 (in Russian)

Sainsbury CL (1969) Geology and ore deposits of the Central York Mountains, Western Seward Peninsula, Alaska. US Geol Surv Bull 1287: pp 1-101

Sainsbury CL, Hamilton JC, Huffman C Jr (1968) Geochemical cycle of selected trace elements in the tin-tungsten-beryllium district. US Geol Surv Bull 1242F, pp 1-42

Schumacher JC (1997) Appendix 2. The estimation of the proportion of ferric iron in the electron-microprobe analysis of amphiboles. Canad Mineral 35: 238-246

Schwartz MO, Surjono (1990) Greisenization and albitization at the Tikus tin-tungsten deposit, Belitung, Indonesia. Econ Geol 85: 691-713
http://doi.org/10.2113/gsecongeo.85.4.691

Seifert T (1994) Zur Metallogenie des Lagerstättendistriktes Morienberg (Ostteil des Mittelerzgebirgischen Antiklinalbereiches. Doctoral dissertation, TU Bergakademie Freiberg, pp 1-174

Seifert T (1997) Mantle metasomatism and associated late Variscan Sn and base metal mineralization in the Erzgebirge (Germany). In Hatton CJ (ed) International Symposium on Plumes, Plates  Mineralization, Abstracts. University of Pretoria, pp 89-90

Seifert T (2008) Metallogeny and Petrogenesis of Lamprophyres in the Mid-European Variscides. IOS Press Millpress, Amsterdam, pp 1-303

Seifert W, Kramer W (2003) Accessory titanite: an important carrier of zirconium in lamprophyres. Lithos 71: 81-98
http://doi.org/10.1016/j.lithos.2003.07.002

Seifert T, Atanasova P, Gutzmer J, Pfänder J (2011) Mineralogy, geochemistry and age of greisen mineralization in the Li-Rb-Cs-Sn-W deposit Zinnwald, Erzgebirge, Germany. Mineral Mag 75: 18-33
http://doi.org/10.1180/minmag.2011.075.4.2519

Sejkora J, Breiter K (1999) The historical ore district of Krupka, Krušné hory Mts, Czech Republic. Bull mineral-petrol Odd Nár Muz (Praha) 7: 29-45 (in Czech)

Semiz B, Çoban H, Roden MF, Özpinar Y, Flower MFJ, McGregor H (2012) Mineral composition in cognate inclusions in Late Miocene-Early Pliocene potassic lamprophyres with affinities to lamproites from the Denizli region, Western Anatolia, Turkey: implications for uppermost mantle processes in a back-arc setting. Lithos 134-135: 253-272
http://doi.org/10.1016/j.lithos.2012.01.005

Strnad L., Mihaljevič M., Šebek O. (2005) Laser ablation and solution ICP-MS determination of REE in USGS BIR-1G, BHVO-2G and BCR-2G glass reference materials. Geost Geoanal Res 29: 303-314
http://doi.org/10.1111/j.1751-908X.2005.tb00902.x

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

Sun SS, McDonough WF (1989) Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes. In: Saunders AD, Norry MJ (eds) Magmatism in the Ocean Basins. Geological Society of London Special Publications 42: 313-345
http://doi.org/10.1144/GSL.SP.1989.042.01.19

Štemprok M (1987) Greisenization (a review). Geol Rundsch 76: 169-175
http://doi.org/10.1007/BF01820580

Štemprok M, Seifert T (2011) An overview of the association between lamprophyric intrusions and rare metal mineralization. Mineralogia 42: 121-162
http://doi.org/10.2478/v10002-011-0011-x

Štemprok M, Novák JK, David J (1994) The association of the granites and tin-tungsten mineralization in the eastern Krušné hory (Erzgebirge), Czech Republic. Monograph Series on Mineral Deposits 31, Gebrüder Bornträger, Berlin-Stuttgart, pp 97-129

Štemprok M, Holub FV, Dolejš D, Pivec E, Novák JK, Lang M, Chlupáčová M (2001) Petrogenetic position of lamprophyres of the Krušné hory batholith and their relationship to metallogenesis. Unpublished report, Charles University Grant Agency 165/1998, Prague, pp 1-55

Štemprok M, Holub FV, Novák JK (2003) Multiple magmatic pulses of the Eastern Volcano-Plutonic Complex, Krušné hory/Erzgebirge batholith and their phosphorus contents. Bull Geosci 78: 277-296

Štemprok M, Seifert T, Holub FV , Chlupáčová M, Dolejš D, Novák JK, Pivec E, Lang M (2008) Petrology and geochemistry of Variscan dykes from the Jáchymov (Joachimsthal) ore district, Czech Republic. J Geosci 53: 65-104
http://doi.org/10.3190/jgeosci.020

Tajčmanová L, Connolly JAD, Cesare B (2009) A thermodynamic model for titanium and ferric iron solution in biotite. J Metamorph Geol 27: 153-165
http://doi.org/10.1111/j.1525-1314.2009.00812.x

Tichomirowa M, Leonhardt D (2010) New age determinations (Pb/Pb zircon evaporation, Rb/Sr) on the granites from Aue-Schwarzenberg and Eibenstock, Western Erzgebirge, Germany. Z geol Wiss 38: 99-123

Tindle AG, Webb PC (1990) Estimation of lithium contents in trioctahedral micas using microprobe data; application to micas from granitic rocks. Eur J Mineral 2: 595-610
http://doi.org/10.1127/ejm/2/5/0595

Tischendorf G (1963) Stand der Kenntnisse bei der Suche nach Zinnlagerstätten im Osterzgebirge. Z angew Geol 10: 225-238

Tischendorf G (1986) Variscan ensialic magmatism and metallogenesis in the Ore Mountains-Modelling of the process. Chem Erde 45: 75-104

Tischendorf G (1988). Leucocratic and melanocratic crust-derived magmatism and metallogenesis. The example Erzgebirge. Z geol Wiss 16: 199-223

Tischendorf G, Gottesmann B, Förster HJ, Trumbull RB (1997) On Li-bearing micas: estimating Li from electron microprobe analyses and an improved diagram for graphical representation. Mineral Mag 61: 809-834
http://doi.org/10.1180/minmag.1997.061.409.05

Tischendorf G, Rieder M, Förster HJ, Gottesmann B, Guidotti CV (2004) A new graphical presentation and subdivision of potassium micas. Mineral Mag 68: 649-667
http://doi.org/10.1180/0026461046840210

Troshin YP (1978) Geochemistry of volatile components in magmatic rocks, haloes and ores of Eastern Transbaikalia. Nauka, Novosibirsk, pp 1-172 (in Russian)

Turpin L, Velde D, Pinte G (1988) Geochemical comparison between minettes and kersantites from the western European Hercynian orogen: trace element and Pb-Sr-Nd isotope constraints on their origin. Earth Planet Sci Lett 87: 73-86
http://doi.org/10.1016/0012-821X(88)90065-9

Vinogradov AP (1962) The average contents of chemical elements in the main types of magmatic rocks of the Earth crust. Geokhimiya 1962/7: 555-571 (in Russian)

von Seckendorff V, Timmerman MJ, Kramer W, Wrobel P (2004) New 40Ar/39Arages and geochemistry of Late Carboniferous-early Permian lamprophyres and related volcanic rocks in the Saxothuringian Zone of the Variscan Orogen (Germany). In: Wilson M, Neumann ER, Timmermann GR, Heremans M, Larsen BT (eds) Permo-Carboniferous Magmatism and Rifting in Europe. Geological Society of London Special Publications 223: 335-359
http://doi.org/10.1144/GSL.SP.2004.223.01.15

Wasternack J, Tischendorf G, Hösel G, Kuschka E, Breiter K, Chrt J, Komínek J, Štemprok M (1995) Mineral Resources Erzgebirge-Vogtland/Krušné hory, Map 2, Metals, Fluorite/Barite- occurrences and environmental impact. Sächsisches Landesamt für Umwelt und Geologie, Bereich Boden und Geologie, Freiberg; Czech Geological Survey, Prague

Watznauer A (1964) Der heutige Stand des Lamprophyrsproblems. Geologie 12: 812-820

Weiss D (1983) Methods of Chemical Analysis of Mineral Resources, Volume 2-3. Czech Geological Survey, Prague, pp 157-302

White RW, Powell R, Holland TJB (2007) Progress relating to calculation of partial melting equilibria for metapelites. J Metamorph Geol 25: 511-527
http://doi.org/10.1111/j.1525-1314.2007.00711.x

Wilson M (1989) Igneous Petrogenesis. A Global Tectonic Approach. Chapman & Hall, London, pp 1-466
http://doi.org/10.1007/978-1-4020-6788-4

Wimmenauer W (1973) Granites and lamprophyres. Bull Soc Geol France 15: 195-198
http://doi.org/10.2113/gssgfbull.S7-XV.3-4.195

Woolley AR, Bergman SC, Edgar AD, Le Bas MJ, Mitchell RH, Rock NMS ,Scott Smith BH (1996). Classification of lamprophyres, lamproites, kimberlites and the kalsilitic, melilitic and leucitic rocks. Canad Mineral 34: 175-186

Wyman DA, Kerrich R (1988) Lamprophyres as source of gold. Nature 332: 209-210
http://doi.org/10.1038/332209a0

Zack T, John T (2007) An evaluation of reactive fluid flow and trace element mobility in subducting slabs. Chem Geol 239: 199-216
http://doi.org/10.1016/j.chemgeo.2006.10.020

Žák K, Štemprok M, Holub FV, Jačková I, Novák JK, Veselovský F (2001) Isotopic composition of sulphur in sulphides and of carbon and oxygen in carbonates from the mafic dykes in the Czech part of the Krušné hory/Erzgebirge. Zpr Geol Výzk v Roce 2000: 111-114

Žák L (1966) Origin of the molybdenite and feldspar deposit of Krupka. II. Paragenetic relations. Acta Univ Carol, Geol 1966: 167-195

Journal of Geosciences, Published by © Czech Geological Society, with support from the Czech Geological Survey.
Webdesign inspired by aTeo. Hosted at the server of the Institute of Petrology and Structural Geology, Charles University, Prague.
ISSN: 1803-1943 (online), 1802-6222 (print)
email: jgeosci(at)jgeosci.org
cover_rotated.gif, 15kB

SNIP (Scopus, 2022): 0.826

IF (WoS, 2022): 1.4

5 YEAR IF (WoS, 2022): 1.8

Policy: Open Access

ISSN: 1802-6222

E-ISSN: 1803-1943