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Mineralogical and Fluid Inclusion Evidence for Reworking of Au Mineralization by Ag-Sb-Base Metal-Rich Fluids from the Bytíz Deposit, Příbram Uranium and Base-Metal Ore District, Czech Republic

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Author
Sejkora, Jiří
Dolníček, Zdeněk
Zachariáš, JiříORCiD Profile - 0000-0002-9769-3303WoS Profile - H-1106-2017Scopus Profile - 7005885950
Ulmanová, Jana
Šrein, Vladimír
Škácha, Pavel

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Publication date
2022
Published in
Minerals
Volume / Issue
12 (12)
ISBN / ISSN
ISSN: 2075-163X
ISBN / ISSN
eISSN: 2075-163X
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This publication has a published version with DOI 10.3390/min12121539

Abstract
This mineralogical and fluid inclusion study was conducted on an Au-bearing quartz-sulfide vein encountered in the deep parts of the Bytíz deposit in the Příbram uranium and base-metal district, Bohemian Massif, Czech Republic. The samples were taken where the Au-bearing vein is crosscut by the common base-metal Zn-Pb ore vein Bt23C. The early mineralization of the Au-bearing vein is composed mainly of quartz (Q-1 to Q-3), illite-muscovite, Fe-Mg chlorite, arsenopyrite, and Au-Ag alloys, showing a wide range of compositions (4-69 at. % Ag) and a decrease in Au/(Au + Ag) ratios during vein evolution. Younger hydrothermal processes led to the crystallization of nests and veinlets composed of late quartz (Q-4), carbonates (siderite, dolomite-ankerite and calcite), base-metal sulfides (galena, sphalerite, chalcopyrite, and tetrahedrite), a suite of Ag and Bi-tellurides, and acanthite. The input of Sb is manifested by the partial to complete replacement of some gold grains by aurostibite and an unnamed (Ag,Au)-Sb oxide with a composition close to AuSbO3. The fluid inclusion study, combined with chlorite thermometry and arsenopyrite thermometry, showed that the early mineralization crystallized from progressively cooled (from 300 to 400 °C down to ca. 180 °C), diluted (1.2-7.0 wt. % NaCl eq.) aqueous solutions. The late portion of the mineralization formed from aqueous fluids with highly variable salinity (0.2-23.4 wt. % NaCl eq.) and homogenization temperatures decreasing from ca. 250 °C to < 50 °C, which compare well with the base-metal mineralization of the vein Bt23C and other base-metal veins of the Příbram ore area. Our study illustrates the nature and intensity of the processes of the reworking of the early gold mineralization mediated by the younger Ag,Sb-rich base-metal fluids, giving rise to Pribram's typical late-Variscan vein Zn-Pb mineralization.
Keywords
vein gold deposits, metasomatism, alteration, mobilization, Bi-tellurides, Zn-Pb mineralization, fluid inclusions, Pribram uranium and base-metal district
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https://hdl.handle.net/20.500.14178/2013
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WOS:000903066700001
SCOPUS:2-s2.0-85159929267
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