Role of volatiles in intrusion emplacement and sulfide deposition in the supergiant Norilsk-Talnakh Ni-Cu-PGE ore deposits

Author:

Barnes Stephen J.1ORCID,Yudovskaya Marina A.23,Iacono-Marziano Giada4,Vaillant Margaux Le1,Schoneveld Louise E.1,Cruden Alexander R.5

Affiliation:

1. 1CSIRO Mineral Resources, Kensington, Western Australia 6151, Australia

2. 2Centre of Excellence (CoE) for Integrated Mineral and Energy Resource Analysis (CIMERA), University of Witwatersrand, Wits 2050, South Africa

3. 3Institute of Ore Geology, Geochemistry, Mineralogy and Petrology, Russian Academy of Science (IGEM-RAS), Staromonetny 35, Moscow 119017, Russia

4. 4Centre National de la Recherche Scientifique (CNRS), Orleans 45071, France

5. 5Monash University, Melbourne, VIC 3141, Australia

Abstract

Abstract The Norilsk-Talnakh orebodies in Siberia are some of the largest examples on Earth of magmatic Ni–Cu–platinum group element (PGE) deposits, formed by segregation of immiscible sulfide melts from silicate magmas. They show distinctive features attributable to degassing of a magmatic vapor phase during ore formation, including: vesiculation of the host intrusions, widespread intrusion breccias, and extensive hydrofracturing, skarns, and metasomatic replacement in the country rocks. Much of the magmatic sulfide was generated by assimilation of anhydrite and carbonaceous material, leading to injection of a suspension of fine sulfide droplets attached to gas bubbles into propagating tube-like host sills (“chonoliths”). Catastrophic vapor phase exsolution associated with a drop in magma overpressure at the transition from vertical to horizontal magma flow enabled explosive propagation of chonoliths, rapid “harvesting” and gravity deposition of the characteristic coarse sulfide globules that form much of the ore, and extensive magmatic fluid interaction with country rocks.

Publisher

Geological Society of America

Subject

Geology

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