Magmatic and hydrothermal evolution of the browns creek intrusive complex and associated gold mineralisation
Abstract
The Browns Creek Au-Cu deposit near Blayney, New South Wales, consists skarnhosted,
magmatically derived and structurally controlled mineralisation. The deposit
is hosted by altered Blayney Volcanics and Cowriga Limestone. The skarn alteration
is a result of the intrusion of the Carcoar Granodiorite, which is <1 member of the
Browns Creek Intrusive Complex. Other members of this complex are the Long Hill
Phase of the Carcoar Granodiorite, the Mine Dyke Group and the PostMineralisation
Intrusives. The Mine Dyke Group has been responsible for the
mineralisation.
The Carcoar Granodiorite is 430.4 ± 4.7 Ma old (based on U-Th-Pb dating
teclmiques on zircons). This date is around 15 Ma older than previously determined
ages for this intrusive. The granodiorite is a multiple phase intrusive. The most
notable phase is the cumulate Long Hill Phase. This mafic phase was previously
believed to be a separate intrusive body to the granodiorite. Greater abundances of
iron, magnesium and lower abundaces of aluminium and potassium are consistent
with the Long Hill Phase representing a cumulate phase of the Carcoar Granodiorite.
Other elements show similar abundances to the granodiorite.
Several forms of alteration are associated with the intrusion of the Carcoar
Granodiorite. The granodiorite has marblised the Cowriga Limestone Member and
hornfelsed the Blayney Volcanics. The dominant alteration assemblage is the skarn
metasomatisation, visible at the mine and other pockets along the contact of the
Carcoar Granodiorite with the country rock.
The orebody has formed close to the contact of the Carcoar Granodiorite with the
Blayney Volcanics and the marblised Cowriga Limestone Member. A complex
structural corridor had previously formed. Three dominant structural trends can be
identified in the vicinity of the mine north-south, northwest and northeast. The
north-south structural trend was the first to be activated in this area. This has created
Abstract v
a structural fabric that was reactivated by later structural movements. The northwest
structural trend has resulted in the juxtaposition of the Carcoar Granodiorite with the
Cowriga Limestone Member. Regional scale, northeast structures have controlled
the dilation of pre-existing north-south structures. This has facilitated the
emplacement of the Mine Dyke Group and hence the mineralisation.
The Mine Dyke Group is a series of dykes that predominantly lie within the ore
zone. The dykes are mostly granitic in composition and range from aplites to
pegamatites. They are mostly oriented north-south and some show evidence of
intruding along north-south oriented faults and shears. The dykes have intruded synto
post-mineralisation and two were dated using U-Th-Pb techniques on zircons.
These analyses yielded ages of 430.0 ± 5.4 Ma and 432.3 ± 4.9 Ma. The Mine Dyke
Group is the phase of the Browns Creek Intrusive Complex that is associated with
mineralisation. As the Carcoar Granodiorite predates the mineralisation, the ages of
the Mine Dyke Group in conjunction with the Carcoar Granodiorite can be utilised
to obtain a date for the mineralisation event. The three dates give a mean age of 431
± 3 Ma for this event.
The orebody is cross-cut by a late intrusive body identified in the latter part of the
mine's operation. The Post-Mineralisation Intrusive is quartz monzodioritic to
granodioritic in composition and is slightly more mafic than the Carcoar
Granodiorite. It has intruded after the formation of the ore body and is not associated
with any mineralisation. There is a slight amount of skarn alteration that is observed
with this intrusion, overprinting the pre-existing skarn and mineralisation.
Description
Keywords
Citation
Collections
Source
Type
Book Title
Entity type
Access Statement
License Rights
Restricted until
Downloads
File
Description
Whole Thesis_FOR ACCESS TO THIS THESIS PLEASE GO TO http://anulib.anu.edu.au/about/collections/theses_externalaccess.html
Front Matter_FOR ACCESS TO THIS THESIS PLEASE GO TO http://anulib.anu.edu.au/about/collections/theses_externalaccess.html