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Permian–polysulphide-siderite–barite–haematite deposit Rude in Samoborska Gora Mts., Zagorje– Transdanubian zone of the Inner Dinarides (CROSBI ID 159381)

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Palinkaš, Ladislav ; Borojević Šoštarić, Sibila ; Strmić Palinkaš, Sabina ; Prochaska, Walter ; Spangenberg, Jorge ; Cuna, Stella ; Šinkovec, Boris Permian–polysulphide-siderite–barite–haematite deposit Rude in Samoborska Gora Mts., Zagorje– Transdanubian zone of the Inner Dinarides // Geologia Croatica, 63 (2010), 1; 93-115. doi: 10.4154/gc.2010.06

Podaci o odgovornosti

Palinkaš, Ladislav ; Borojević Šoštarić, Sibila ; Strmić Palinkaš, Sabina ; Prochaska, Walter ; Spangenberg, Jorge ; Cuna, Stella ; Šinkovec, Boris

engleski

Permian–polysulphide-siderite–barite–haematite deposit Rude in Samoborska Gora Mts., Zagorje– Transdanubian zone of the Inner Dinarides

Samoborska Gora Mts. is situated within the westernmost part of the Zagorje–Mid– Transdanubian zone of the Internal Dinarides. The Samoborska Gora Mts. predominantly consists of Permian unmetamorphosed siliciclastic sediments and evaporites, overlain by Lower Triassic sediments. Rude mineralisation is hosted by Permian siliciclastic sediments, below gypsum and anhydrite strata. The central part of the deposit consists of a 1.5 km long stratabound mineralisation, grading laterally into ferruginous sandstone and protruding vertically into a gypsum–anhydrite layer. Siderite–polysulphide–barite–quartz veins are located below the stratabound mineralisation. The stratiform part of the deposit is situated above the stratabound and consists of haematite layer with barite concretions and veinlets. Late stage galena–barite veins overprint earlier types of mineralisation. The Rude ore deposit was generated by predominantly NaCl ± CaCl2–H2O solutions. Detrital quartz from stratiform mineralisation contains fl uid inclusions with salinities between 7 and 11 wt. % NaCl equ., homogenizing between 150 °C to 230 °C. Stratabound/siderite–polysulphide–barite– quartz vein type mineralisation was derived from solutions with salinities between 5 and 19 wt. % NaCl equ., homogenizing between 60 °C and 160 °C, while late stage galena– barite veins were precipitated from solutions with salinities between 11 and 16 wt. % NaCl equ., homogenizing between 100 °C to 140 °C. Fluid inclusion bulk leachate chemistry recorded Na+>Mg2+>K+>Ca2+>Li+ and Cl–>SO4 2– ions. Sulphur isotope composition of barites and overlying gypsum stems from Permian seawater sulphate, supported by increased Br– content, which follows successively the seawater evaporation line. The sulphur isotopic composition of sulphides varies between –0.2 and +12.5 ‰, as a result of thermal reduction of Permian marine sulphate. Ore–forming fl uids were produced by hydrothermal convective cells (refl ux brine model), and were derived primarily from Permian seawater, modifi ed by evaporation and interaction with Permian sedimentary rocks. Rude deposits in Samoborska Gora Mts. may be declared as a prototype of the Permian siderite–polysulphide–barite deposits (products of rifting along the passive Gondwana margin), in the Inner Dinarides, and their equivalents extending northeastward into the Zagorje–Mid–Transdanubian Zone and the Gemerides, and southeastward to the Hellenide– Albanides.

Rude siderite–polysulphide–barite–haematite deposit ; Early intracontinental rifting ; SEDEX ; Feeder zone ; Evaporites ; Shock quartz ; Planar deformation feature ; PDFs ; Zagorje–Mid–Transdanubian zone ; Internal Dinarides

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Podaci o izdanju

63 (1)

2010.

93-115

objavljeno

1330-030X

10.4154/gc.2010.06

Povezanost rada

Geologija

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