Journal of

GEOsciences

  (Formerly Journal of the Czech Geological Society)

Original Paper

Jiří Zachariáš, Tomáš Novák

Gold-bearing quartz veins of the Bělčice ore district, Bohemian Massif: evidence for incursion of metamorphic fluids into a granodiorite body and for isothermal mixing between two types of metamorphic fluids

Journal of Geosciences, volume 54 (2009), issue 1, 57 - 72

DOI: http://doi.org/10.3190/jgeosci.039


  Abstract References Map

Baker T (2002) Emplacement depth and carbon dioxide-rich fluid inclusions in intrusion-related gold deposits. Econ Geol 97: 1111-1117
http://doi.org/10.2113/97.5.1111

Bakker RJ (1997) Clathrates: computer programs to calculate fluid inclusion V-X properties using clathrate melting temperatures. Comput and Geosci 23: l-18
http://doi.org/10.1016/S0098-3004(96)00073-8

Bakker RJ (1999) Adaptation of the Bowers and Helgeson (1983) equation of state to the H2O-CO2-CH4-N2-NaCl system. Chem Geol 154: 225-236
http://doi.org/10.1016/S0009-2541(98)00133-8

Bodnar RJ (1993) Revised equation and table for determining the freezing point depression of H2O-NaCl solutions. Geochim Cosmochim Acta 57: 683-684
http://doi.org/10.1016/0016-7037(93)90378-A

Boiron MC, Barakat A, Cathelineau M, Banks DA, Ďurišová J, Morávek P (2001): Geometry and P-V-T-X conditions of microfissural ore fluid migration: the Mokrsko gold deposit (Bohemia). Chem Geol 173: 207-225
http://doi.org/10.1016/S0009-2541(00)00276-X

Burrows DR, Spooner ETC (1987) Generation of a magmatic H2O-CO2 fluid enriched in Mo, Au, and W within Archean sodic granodiorite stock, Mink Lake, northwestern Ontario. Econ Geol 82: 1931-1957
http://doi.org/10.2113/gsecongeo.82.7.1931

Cathelineau M (1988) Cation site occupancy in chlorites and illites as a function of temperature. Clay Min 23: 471-485
http://doi.org/10.1180/claymin.1988.023.4.13

Cathelineau M, Nieva D (1985) A chlorite solid solution geothermometer: the Los Azufres (Mexico) geothermal system. Contrib Mineral Petrol 91: 235-244
http://doi.org/10.1007/BF00413350

Clayton RN, Mayeda TK (1963) The use of pentafluoride in the extraction of oxygen from silicates and oxides for isotopic analysis. Geochim Cosmochim Acta 27: 43-52
http://doi.org/10.1016/0016-7037(63)90071-1

Clayton RN, O'Neil JR, Mayeda TK (1972) Oxygen isotope exchange between quartz and water. J Geophys Res 77: 3057-3067
http://doi.org/10.1029/JB077i017p03057

de Caritat P, Hutcheon I, Walshe JL (1993) Chlorite geothermometry - a review. Clays and Clay Min 41: 219-239
http://doi.org/10.1346/CCMN.1993.0410210

Dörr W, Fiala J, Franke W, Haack U, Philippe S, Schastok J, Scheuvens D, Vejnar Z, Zulauf G (1998) Cambrian vs. Variscan tectonothermal evolution within the Teplá-Barrandian: evidence from U-Pb zircon ages of syn-tectonic plutons (Bohemian Massif, Czech Republic). Acta Univ Carol , Geol 42: 229-230

Goldfarb RJ, Groves DI, Gardoll S (2001) Orogenic gold and geologic time: a global synthesis. Ore Geol Rev 18: 1-75
http://doi.org/10.1016/S0169-1368(01)00016-6

Groves DI, Goldfarb RJ, Gebre-Mariam M, Hagemann SG, Robert F (1998) Orogenic gold deposits: A proposed classification in the context of their crustal distribution and relationship to other gold deposit types. Ore Geol Rev 13: 7-27
http://doi.org/10.1016/S0169-1368(97)00012-7

Groves DI, Goldfarb RJ, Robert F, Hart CJR (2003) Gold deposits in metamorphic belts: overview of current understanding, outstanding problems, future research, and exploration significance. Econ Geol 98: 1-29
http://doi.org/10.2113/98.1.1

Hofmann A, Slavík F (1913) The Kasejovice gold-bearing district. Rozpr Čes Akad Věd, Umění, Tř. II, 22: 1-44 (in Czech)

Holub FV, Cocherie A, Rossi P (1997) Radiometric dating of granitic rocks from the Central Bohemian Plutonic Complex (Czech Republic), constraints on the chronology of thermal and tectonic events along the Moldanubian-Barrandian boundary. C R Acad Sci Paris, Sciences de la Terre et des planétes 325: 19-26
http://doi.org/10.1016/S1251-8050(97)83268-5

Janoušek V, Gerdes A (2003) Timing the magmatic activity within the Central Bohemian Pluton, Czech Republic: conventional U-Pb ages for the Sázava and Tábor intrusions and their geotectonic significance. J Czech Geol Soc 48: 70-71
Direct link

Jowett EC (1991) Fitting iron and magnesium into the hydrothermal chlorite geothermometer. GAC/MAC/SEG Joint Annual Meeting, Toronto, May 27-29, 1991, Program with Abstracts, pp A62

Koutek J (1946) Geology of the Kasejovice district with respect to new underground exploration activities. Sbor St geol Úst Čs Republ 13: 127-187 (in Czech)

Kretschmar U, Scott SD (1976) Phase relations involving arsenopyrite in system Fe-As-S and their application. Canad Mineral 14: 364-386

Lang JR, Baker T (2001) Intrusion-related gold systems: the present level of understanding. Mineral Depos 36: 477-489
http://doi.org/10.1007/s001260100184

Litochleb J (1984) Gold-bearing veins in Újezdec near Bělčice (south Bohemia). Acta Musei Bohemiae, České Budějovice 24: 73-80 (in Czech)

Malec J, Novák F (1982) Mineralogical and geochemical study of heavy minerals for the project “Geochemical heavy minerals prospection in the southwestern part of the Bohemian Massif”. Unpublished report of the Institute of Raw Materials, Kutná Hora (in Czech)

McCrea JM (1950) On the isotope chemistry of carbonates and a paleotemperature scale. J Chem Phys 18: 849-857
http://doi.org/10.1063/1.1747785

Morávek P, Janatka J, Pertoldová J, Straka E, Ďurišová J, Pudilová M (1989) Mokrsko gold deposit - the largest gold deposit in the Bohemian Massif, Czechoslovakia. Econ Geol Monograph 6: 252-259

Ohmoto H, Rye RO (1979) Isotopes of sulfur and carbon. In: Barnes HL (ed) Geochemistry of Hydrothermal Ore Deposits. John Whiley & Sons, New York, pp 509-561

O'Neil JR, Clayton RN, Mayeda TK (1969) Oxygen isotope fractionation in divalent metal carbonates. J Chem Phys 51: 5547-5558
http://doi.org/10.1063/1.1671982

Pécher A, Lespinasse M, Leroy J (1985): Relations between fluid inclusion trails and regional stress field: a tool for fluid chronology - an example of an intragranitic uranium ore deposit (northwestern Massif Central, France). Lithos 18: 229-237
http://doi.org/10.1016/0024-4937(85)90027-1

Sharp ZD, Essene EJ, Kelly WC (1985) A re-examination of the arsenopyrite geothermometer: pressure considerations and applications to natural assemblages. Canad Mineral 23: 517-534

Sobotka J (1966) Kasejovice-Bělčice gold-bearing district of and its minerals. Lecture Notes, National Museum, Prague, pp 1-23 (in Czech)

Thiéry R, Van den Kerkhof AM, Dubessy J (1994) vX properties of CH4-CO2 and CO2-N2 fluid Inclusions: modeling for T < 31°C and P < 400 bars. Eur J Mineral 6: 753-771

Thompson JFH, Sillitoe RH, Baker T, Lang JR, Mortensen JK (1999) Intrusion related gold deposits associated with tungsten-tin provinces. Min Depos 34: 323-334
http://doi.org/10.1007/s001260050207

Váňa T et al. (1988) Bohemian Massif - verification of gold resources, Kasejovice-Bělčice area: project final report. Unpublished manuscript, Geoindustria, Prague, pp 1-65 (in Czech)

Vlašímský P, Píša M (1985) Prognoses of W-Mo ores in the Bělčice ore district. Unpublished report, Czech Geological Survey, Prague, (in Czech)

Vityk MO, Bodnar RJ (1998) Statistical microthermometry of synthetic fluid inclusions in quartz during decompression reequilibration. Contrib Mineral Petrol 132: 149-162
http://doi.org/10.1007/s004100050413

Wiewióra A, Weiss Z (1990) Crystallochemical classifications of phyllosilicates based on the unified system of projection of chemical compositions. Clay Minerals 25: 83-92
http://doi.org/10.1180/claymin.1990.025.1.09

Zachariáš J, Pudilová M (2002) Fluid inclusion and stable isotope study of the Kasejovice gold district, central Bohemia. Bull Czech Geol Surv 77: 157-165

Zachariáš J, Stein H (2001) Re-Os ages of Variscan hydrothermal gold mineralisations, Central Bohemian metallogenetic zone, Czech Republic. In: Piestrzyński et al. (eds) Mineral Deposits at the Beginning of the 21st Century, Swets & Zeitlinger Publishers Lisse, Amsterdam, pp 851-854

Zachariáš J., Pudilová M., Žák K., Morávek P., Litochleb J., Váňa T., Pertold Z. (1997): P-T conditions, fluid inclusions and O, C, S isotope characteristics of gold-bearing mineralizations within the Central Bohemian Metallogenic Zone. Acta Univ Carol , Geol 41: 167-178

Zachariáš J, Pertold Z, Pudilová M, Žák K, Pertoldová J, Stein H, Markey R (2001) Geology and genesis of Variscan porphyry-style gold mineralization, Petráčkova hora deposit, Bohemian Massif, Czech Republic. Min Depos 36: 517-541
http://doi.org/10.1007/s001260100187

Zhang W, Fyfe WS (1995) Chloritization of the hydrothermally altered bedrock at the Igarapé Bahia gold deposit, Carajás, Brazil. Min Depos 30: 30-38

Zhang YG, Frantz JD (1987) Determination of the homogenization temperatures and densities of supercritical fluids in the system NaCl-KCl-CaCl2-H2O using synthetic fluid inclusions. Chem Geol 64: 335-350
http://doi.org/10.1016/0009-2541(87)90012-X

Žák K, Sztacho P (1994) Marbles, calc-silicate rocks and skarns of the Moldanubian Unit (Bohemian Massif): Carbon and oxygen isotope and fluid inclusion constraints on their formation conditions. In: Nishiyama T, Fisher GW (eds) Proceedings 29th International Geological Congress, Kyoto, Part A, Metamorphic Reactions: Kinetics and Mass Transfer. VSP International Science Publishers, Zeist, pp 39-49

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