FAULT-INDUCED GOLD SATURATION OF A SINGLE AURIFEROUS FLUID IS A KEY PROCESS FOR OROGENIC GOLD DEPOSIT FORMATION

Author:

Sugiono Dennis1,LaFlamme Crystal12,Thébaud Nicolas1,Martin Laure13,Savard Dany4,Fiorentini Marco1

Affiliation:

1. 1 Centre for Exploration Targeting, School of Earth Sciences, University of Western Australia, Crawley 6009, Australia

2. 2 Département de géologie et de génie géologique, Université Laval, Québec City G1V 0A6, Canada

3. 3 Centre for Microscopy, Characterisation and Analysis, University of Western Australia, Crawley 6009, Australia

4. 4 Laboratoire des Matériaux Terrestres, Université du Québec à Chicoutimi, Chicoutimi G7H 2B1, Canada

Abstract

Abstract In orogenic gold deposits, the mechanism by which a hydrothermal fluid precipitates gold in laminated quartz veins remains elusive. The Kanowna Belle deposit hosts gold mineralization in structurally controlled quartz-pyrite laminated veins that cut volcano-sedimentary and granitic rocks of the Kalgoorlie terrane, Australia. Veins show microtextural evidence for multiphased emplacement, corresponding to three distinct pyrite growth zones in which Au enrichment in the pyrite is attributed to high fluid influx. To monitor the chemical and isotopic evolution of the auriferous fluid leading to gold precipitation, we combine in situ multiple sulfur isotope analyses with trace element composition of gold-bearing pyrite growth zones: cores (Au ≤149 ppm; δ34S –3.3 to +4.2‰; As ≤2.5 wt %; Ni ≤4,022 ppm; Te ≤416 ppm), Au-rich oscillatory zoned mantles (Au ≤2,251 ppm; δ34S –8.4 to +0.1‰; As ≤4.5 wt %; Ni ≤1,111 ppm; Te ≤829 ppm), and rims (Au ≤264 ppm; δ34S –6.0 to +2.8‰; As ≤1.4 wt %; Ni ≤2,113 ppm; Te ≤229 ppm). The positive and consistent Δ33S of each zone (Δ33S = +0.3 ± 0.2‰; n = 160) indicates that one single reservoir was tapped during the evolution of the mineralizing system. The gold-rich pyrite mantle zones precipitated from a fluid undergoing SO42−/H2S fluctuations associated with phase separation due to rapid and repeated releases in fluid pressure. This study demonstrates that the “fault-valve” process applies a first-order control on the precipitation of gold from a single auriferous fluid reservoir.

Publisher

Society of Economic Geologists, Inc.

Subject

Economic Geology,Geochemistry and Petrology,Geology,Geophysics

Reference63 articles.

1. Aaltonen, A. , 1997, The significance of vein and breccia Paragenesis to mineralisation at the Kanowna Belle Gold Mine, Eastern Goldfields province, Western Australia: B.Sc. thesis, Perth, University of Western Australia, 50 p.

2. Gold mineralisation throughout about 45 Ma of Archaean orogenesis: Protracted flux of gold in the Golden Mile, Yilgarn craton, Western Australia;Bateman;Mineralium Deposita,2004

3. Fluid mixing in orogenic gold deposits: Evidence from the HO-Sr isotope composition of the Val-d’Or vein field (Abitibi, Canada);Beaudoin;Chemical Geology,2016

4. Archean gold mineralization and oxidized hydrothermal fluids;Cameron;Economic Geology,1987

5. Multiple sulfur isotope analyses support a magmatic model for the volcanogenic massive sulfide deposits of the Teutonic Bore Volcanic Complex, Yilgarn craton, Western Australia;Chen;Economic Geology,2015

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