Granite Pluton at the Panasqueira Tungsten Deposit, Portugal: Genetic Implications as Revealed from New Geochemical Data

Author:

Breiter Karel1ORCID,Ďurišová Jana1,Korbelová Zuzana1,Vašinová Galiová Michaela23,Hložková Michaela3

Affiliation:

1. Institute of Geology, Czech Academy of Sciences, Rozvojová 269, Praha 6, CZ-165 00 Prague, Czech Republic

2. Institute of Chemistry and Technology of Environmental Protection, Faculty of Chemistry, Brno University of Technology, Purkyňova 118, CZ-612 00 Brno, Czech Republic

3. BIC Brno, Purkyňova 125, CZ-612 00 Brno, Czech Republic

Abstract

Core samples recovered from exploration boreholes and granite/greisen outcrops at the Panasqueira world-class tungsten deposit in central Portugal were subjected to chemical analyses and petrographic studies. We present a geochemical dataset and the trace element compositions of quartz and micas from a large part of the unexposed Panasqueira granitic pluton. Our data suggest that the hidden granite body is more complicated than previously believed. It consists of a flat cupola of porphyritic granite with only traces of mineralization at Rio and a steep stock of greisenized leucogranite surrounded by a swarm of flat quartz–muscovite veins rich in wolframite between Barroca Grande and Panasqueira. The contents of W (Sn, Nb, Ta) in muscovite markedly drop at a transition from the unmineralized greisen body to quartz veins. The W deposit was formed in three principal stages: (1) intrusion of porphyritic two-mica granite accompanied with local near-contact greisenization and uncommon quartz–wolframite veinlets; (2) intrusion of a more strongly fractionated leucogranite and formation of the cupola and apophyses; (3) circulation of hydrothermal fluids from deeper parts of the granite body into the cupola, greisenization, hydraulic fracturing and opening of flat structures in and outside the cupola and formation of ore veins.

Funder

Czech Science Foundation

Institute of Geology of the Czech Academy of Sciences

Publisher

MDPI AG

Subject

Geology,Geotechnical Engineering and Engineering Geology

Reference57 articles.

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3. Tungsten-tin mineralization and paragenesis in the Panasqueira and Vale de Ermida mining districts, Portugal;Com. Serv. Geol. Portugal,1967

4. Geologic, fluid inclusion and stable isotope studies of the tin-tungsten deposits of Panasqueira, Portugal;Kelly;Econ. Geol.,1979

5. Bussink, R.W. (1984). Geochemistry of the Panasqueira Tungsten-Tin Deposit, Portugal. [Ph.D. Thesis, Instituut voor Aadwetenschappen der Rijksuniversiteit te Utrecht].

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