Deformation-enhanced fluid evolution and skarn–IOCG transition in the Paleoproterozoic Elaine Dorothy Cu–Au system, Mount Isa Inlier, Australia

Nyakecho, Catherine, Kumar, Avish, Sanislav, Ioan, Finch, Melanie, and McCoy-West, Helen (2026) Deformation-enhanced fluid evolution and skarn–IOCG transition in the Paleoproterozoic Elaine Dorothy Cu–Au system, Mount Isa Inlier, Australia. Mineralium Deposita. (In Press)

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Abstract

The Elaine Dorothy Cu-Au deposit, located in the Mary Kathleen Domain of the Mount Isa Inlier, Australia, records the interaction of Paleoproterozoic skarn metasomatism, fluid evolution, and deformation. The deposit is hosted by carbonate- and calc-silicate-rich rocks of the Corella Formation and comprises diopside–garnet–scapolite–wollastonite ± amphibole assemblages associated with pyrrhotite–chalcopyrite–pyrite mineralisation. Field relationships and mineral textures indicate that sulphide deposition began during or shortly after prograde skarn formation and subsequently evolved from disseminated and vein-controlled to semi-massive, massive, and shear-zone-hosted mineralisation. LA-ICP-MS analyses of pyrite, pyrrhotite, chalcopyrite, and magnetite record systematic variation in trace-element compositions during this evolution. Early Py1 is enriched in Co and Se and displays Co/Sb–Se/As characteristics consistent with a magmatic-hydrothermal contribution. Se-in-pyrite thermometry yields formation temperatures of up to 544 ± 36 °C for the earliest stage, decreasing to approximately 323–417 °C in later Py1 and 342 ± 11 °C for Py2. The transition from Co-rich Py1 to Co-poor, Ni-enriched Py2, together with pyrrhotite-dominated assemblages and cross-cutting chalcopyrite–pyrrhotite textures, records progressive changes in fluid chemistry and conditions of sulphide stability. Variable magnetite trace-element compositions and brecciation further indicate repeated modification during continued fluid circulation. Structural relationships demonstrate that deformation enhanced permeability along the Mary Kathleen structural architecture, promoting fluid focusing, sulphide redistribution, and local concentration within retrograde alteration zones. We interpret Elaine Dorothy as a deformation-enhanced Paleoproterozoic calcic skarn that evolved toward a skarn–IOCG transitional system, rather than as a classic IOCG end member. The deposit demonstrates how deformation, fluid–rock interaction, and evolving redox–sulphur-fugacity conditions progressively modify an early calcic skarn framework, enhancing permeability and fluid focusing, and generating IOCG-affinity characteristics through continued hydrothermal reworking rather than a discrete IOCG-forming event. This provides a process-based framework for recognising structurally reworked skarn systems in Proterozoic mineral provinces.

Item ID: 94200
Item Type: Article (Research - C1)
ISSN: 0026-4598
Copyright Information: © The Author(s) 2026. This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/.
Date Deposited: 06 Oct 2026 23:50
FoR Codes: 37 EARTH SCIENCES > 3705 Geology > 370508 Resource geoscience @ 40%
37 EARTH SCIENCES > 3705 Geology > 370511 Structural geology and tectonics @ 30%
37 EARTH SCIENCES > 3703 Geochemistry > 370302 Inorganic geochemistry @ 30%
SEO Codes: 28 EXPANDING KNOWLEDGE > 2801 Expanding knowledge > 280107 Expanding knowledge in the earth sciences @ 100%
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