EVOLUTION OF THE PEAK HILL HIGH-SULFIDATION EPITHERMAL AU–CU DEPOSIT, EASTERN AUSTRALIA

dc.contributor.authorSquire R.J.
dc.contributor.authorHerrmann W.
dc.contributor.authorPape D.
dc.contributor.authorChalmers D.Ia.
dc.date.accessioned2026-08-15T12:16:40Z
dc.date.issued2007
dc.description.abstractThe early Palaeozoic Macquarie Arc, southeastern Australia, hosts a variety of major late Ordovician to earliest Silurian subduction-related deposits (e.g., Cadia East, Ridgeway, Cadia Hill, Cowal and Northparkes). However, there is uncertainty about whether coeval high-sulfidation epithermal deposits, which occur in intra-oceanic metallogenic belts elsewhere in the West Pacific, (e.g., Lepanto and Chinkuashih), are also present in the Macquarie Arc. This has led to suggestions that their absence may be due to the poor preservation potential of deposits that form at relatively shallow crustal levels in ancient rocks. We present here an interpretation for evolution of the Peak Hill Au–Cu deposit based on the distribution of alteration facies, sulfur isotope data from several textural forms of pyrite and barite, and an assessment of the regional volcanic and sedimentary facies architecture. These data show that the Peak Hill deposit displays a distinct sub-vertical zoning with a pyrophyllite and vuggy-quartz core, that today extends about 350m east–west and at least 550m north–south, which grades out through paragonite+muscovite, kaolinite to a chlorite+epidote alteration zone at the margin. The alteration zoning reflects both lower temperatures and neutralisation of acid fluids with increasing distance from the core, which represents the conduit along which hot acidic hydrothermal fluids were channelled. Several temporally overlapping events of silicification, bladed-quartz-pyrite veining, brecciation and pyrite veining occurred during the last stages of hydrothermal alteration, although most appear to predate mineralisation. Au–Cu mineralisation was associated with late quartz-pyrite-barite veins, and the highest gold grades occur mainly in microcrystalline-quartz-altered rocks in the paragonite+muscovite alteration zone, generally within 50m outward from the boundary of the pyrophyllite and vuggy-quartz core. Sulfur- and lead-isotope data, and the characteristic zoning of ore minerals and alteration assemblages support a magmatic source for the hydrothermal fluids. Similarities in many of the isotopic signatures between Peak Hill and deposits such as Northparkes support generation of the high-sulfidation mineralisation during the Late Ordovician to earliest Silurian (possibly ca. 440Ma) metallogenic event. The Late Ordovician to Early Silurian volcanic and sedimentary facies associations at Peak Hill are consistent with alteration and mineralisation occurring in rocks deposited in a submarine setting.
dc.identifierhttps://elibrary.ru/item.asp?id=53159388
dc.identifier.citationMineralium Deposita, 2007, 42, 5, 489-503
dc.identifier.doi10.1007/s00126-006-0076-4
dc.identifier.issn0026-4598
dc.identifier.urihttps://repository.geologyscience.ru/handle/123456789/54127
dc.subjectPEAK HILL
dc.subjectHIGH SULFIDATION
dc.subjectEPITHERMAL GOLD
dc.subjectLACHLAN OROGEN
dc.subjectAUSTRALIA
dc.subject.agePaleozoic::Ordovician
dc.subject.agePaleozoic::Silurian
dc.subject.ageПалеозой::Ордовикская
dc.subject.ageПалеозой::Силурийская
dc.titleEVOLUTION OF THE PEAK HILL HIGH-SULFIDATION EPITHERMAL AU–CU DEPOSIT, EASTERN AUSTRALIA
dc.typeСтатья

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