Contact Metamorphic and Metasomatic Processes at the Kharaelakh Intrusion, Oktyabrsk Deposit, Norilsk-Talnakh Ore District: Application of LA-ICP-MS Dating of Perovskite, Apatite, Garnet, and Titanite

Author:

Marfin Alexander E.12,Ivanov Alexei V.1,Kamenetsky Vadim S.23,Abersteiner Adam34,Yakich Tamara Yu.5,Dudkin Timur V.16

Affiliation:

1. Institute of the Earth’s Crust, Siberian Branch of the Russian Academy of Sciences, 128 Lermontov Street, Irkutsk 664033, Russia

2. Institute of Experimental Mineralogy, Russian Academy of Sciences, 4 Academica Osypyana Street, Chernogolovka 142432, Russia

3. School of Natural Sciences, University of Tasmania, Hobart, Tasmania 7001, Australia

4. Institute of Volcanology and Seismology, Far-Eastern Branch of the Russian Academy of Sciences, 9 Piip Boulevard, Petropavlovsk-Kamchatsky 683006, Russia

5. Tomsk Polytechnic University, 30 Lenin Street, Tomsk 634050, Russia

6. Norilsk Geology Ltd., Norilsk 663332, Russia

Abstract

Abstract The Norilsk-Talnakh ore district in the northwestern Siberian platform contains globally unique reserves of Cu-Ni-sulfides with Pt and, especially, Pd. The Oktyabrsk deposit, which is one of the largest in the district, is spatially and genetically associated with the Kharaelakh mafic-ultramafic intrusion and its exceptionally large metamorphic and metasomatic aureoles. In this study, we employed in situ laser ablation-inductively coupled plasma-mass spectrometry U-Pb isotope dating of apatite, titanite, garnet, and perovskite that cocrystallize with disseminated sulfides within the aureole of metasomatic and contact metamorphic rocks. The calculated isotopic ages for apatite (257.3 ± 4.5 and 248.9 ± 5.1 Ma), titanite (248.6 ± 6.8 and 249.1 ± 2.9 Ma), garnet (260.0 ± 11.0 Ma), and perovskite (247.3 ± 8.2 Ma), though with large uncertainties, indicate that sulfide mineralization within metasomatic and contact-metamorphic rocks is coeval with the emplacement of the Kharaelakh intrusion. These isotopic dates are in complete agreement with the published isotope dilution-thermal ionization mass spectrometry U-Pb zircon ages for the Norilsk intrusions and, at the same time, notably older than available Re-Os isochron ages of sulfides. The latter ages have been long interpreted as evidence for a prolonged duration of magmatic ore-forming processes; however, our data narrow their life span. Trace elements in titanite and garnet allow distinguishing late- and postmagmatic grains, which show indistinguishable U-Pb isotope ages.

Publisher

Society of Economic Geologists

Subject

Economic Geology,Geochemistry and Petrology,Geology,Geophysics

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