We report whole-rock major, trace, and platinum-group element (PGE) geochemistry of volcanic rocks from the Teutonic Bore complex that hosts the Jaguar and Bentley Cu–Zn volcanogenic massive sulfide (VMS) deposits. This study aims to understand their sulfide saturation history and chalcophile element evolution during differentiation of the Jaguar and Bentley magmas, and investigate the role of chalcophile element fertility on the formation of VMS deposits. The fractionated primitive mantle– normalized trace element patterns, with negative Nb and Ti anomalies of basalts, andesites, dacites, and rhyolites from Jaguar and Bentley, are similar to each other. The trace elements and PGE show continuous variations when plotted against fractio...
Platinum-group element (PGE) geochemistry may be used to constrain the timing of sulfide saturation ...
Magmas enriched in Cu and Au are likely to be the most prospective for magmatic–hydrothermal deposit...
Chalcophile element fertility, the chalcophile metal abundance in the source magma, is likely to be ...
Porphyry deposits produce nearly 75% of the world's Cu, 95% of its Mo and 35% of its Au. These depos...
Recent studies have shown that platinum-group elements (PGE) can be used to constrain the timing of ...
Recent studies have shown that platinum-group elements (PGE) can be used to constrain the timing of ...
Recent studies have shown that platinum-group elements (PGE) can be used to constrain the timing of ...
Recent studies have shown that platinum-group elements (PGE) can be used to constrain the timing of ...
Jaguar, an Archean Cu-Zn-rich volcanic-hosted massive sulfide deposit, is situated in the Teutonic B...
Jaguar, an Archean Cu-Zn-rich volcanic-hosted massive sulfide deposit, is situated in the Teutonic B...
Chalcophile element fertility, the chalcophile metal abundance in the source magma, is likely to be ...
Chalcophile element fertility, the chalcophile metal abundance in the source magma, is likely to be ...
Chalcophile element fertility, the chalcophile metal abundance in the source magma, is likely to be ...
Magmas enriched in Cu and Au are likely to be the most prospective for magmatic–hydrothermal deposit...
Platinum-group element concentrations in felsic to intermediate rocks from the Forest Reef Volcanics...
Platinum-group element (PGE) geochemistry may be used to constrain the timing of sulfide saturation ...
Magmas enriched in Cu and Au are likely to be the most prospective for magmatic–hydrothermal deposit...
Chalcophile element fertility, the chalcophile metal abundance in the source magma, is likely to be ...
Porphyry deposits produce nearly 75% of the world's Cu, 95% of its Mo and 35% of its Au. These depos...
Recent studies have shown that platinum-group elements (PGE) can be used to constrain the timing of ...
Recent studies have shown that platinum-group elements (PGE) can be used to constrain the timing of ...
Recent studies have shown that platinum-group elements (PGE) can be used to constrain the timing of ...
Recent studies have shown that platinum-group elements (PGE) can be used to constrain the timing of ...
Jaguar, an Archean Cu-Zn-rich volcanic-hosted massive sulfide deposit, is situated in the Teutonic B...
Jaguar, an Archean Cu-Zn-rich volcanic-hosted massive sulfide deposit, is situated in the Teutonic B...
Chalcophile element fertility, the chalcophile metal abundance in the source magma, is likely to be ...
Chalcophile element fertility, the chalcophile metal abundance in the source magma, is likely to be ...
Chalcophile element fertility, the chalcophile metal abundance in the source magma, is likely to be ...
Magmas enriched in Cu and Au are likely to be the most prospective for magmatic–hydrothermal deposit...
Platinum-group element concentrations in felsic to intermediate rocks from the Forest Reef Volcanics...
Platinum-group element (PGE) geochemistry may be used to constrain the timing of sulfide saturation ...
Magmas enriched in Cu and Au are likely to be the most prospective for magmatic–hydrothermal deposit...
Chalcophile element fertility, the chalcophile metal abundance in the source magma, is likely to be ...