HR: 0800h
AN: GP41B-0867 [Abstracts]
TI: A Lower-Crust or Mantle Source for Mineralizing Fluids Beneath the Olympic Dam IOCG Deposit, Australia:
New Evidence From Magnetotelluric Sounding
AU: * Heinson, G
EM: Graham.Heinson@adelaide.edu.au
AF: University of Adelaide, DP313 Mawson Building
Geology and Geophysics, Adelaide, SA 5005
Australia
AB:
The iron-oxide-copper-gold (IOCG) Olympic Dam (OD) deposit, situated along the margin of the Proterozoic Gawler Craton, South
Australia, is the world's largest uranium deposit, and sixth largest copper deposit; it also contains significant reserves
of gold, silver and rare-earth elements (REE). Gaining a better understanding of the mechanisms for genesis of the economic
mineralisation is fundamental for defining exploration models in similar crustal-settings. To delineate crustal structures
that may constrain mineral system fluid pathways, coincident deep crustal seismic and magnetotelluric (MT) transects were
obtained along a 220 km section that crosses OD and the major crustal boundaries.
We present results from 58 long-period (10-104 s) MT sites, with site spacing of 5 to 10 km. A 2D inversion of all MT
data to a depth of 100 km shows four notable features: (a) sedimentary cover sequences with low resistivity (<20
Ω.m) thicken to 10 km towards the northern cover sequences of the Adelaide Rift Complex; (b) a northeast-dipping
crustal boundary separates a highly resistive (>1000 Ω.m) Archaean crustal core, from a more conductive crust to the
north (typically <500 Ω.m); (c) to the north of OD, the crust to about 20 km is quite resistive (~1000
Ω.m), but the lower crust is much more conductive (<100 Ω.m); and (d) beneath OD, we image a low-resistivity
region (<100 Ω.m) throughout the crust, coincident with a seismically transparent region. We argue that the cause
of the low-resistivity and low-reflectivity region beneath OD may be due to the upward movement of crustal-volatiles that
have deposited conductive graphite mineralisation along grain boundaries, simultaneously annihilating acoustic impedance
boundaries. The source of the volatiles may be from the mantle-degassing or retrograde metamorphism of the lower crust
associated with Proterozoic crustal deformation.
DE: 1515 Geomagnetic induction
DE: 3665 Mineral occurrences and deposits
DE: 3914 Electrical properties
DE: 8103 Continental cratons
SC: Geomagnetism and Paleomagnetism [GP]
MN: Fall Meeting 2005