<!DOCTYPE html PUBLIC "-//W3C//DTD XHTML 1.0 Transitional//EN" "http://www.w3.org/TR/xhtml1/DTD/xhtml1-transitional.dtd"> <html> <head> <title>UTas ePrints - Endeavour copper-gold porphyry deposits, Northparkes, New South Wales: intrusive history and fluid evolution</title> <script type="text/javascript" src="http://eprints.utas.edu.au/javascript/auto.js"><!-- padder --></script> <style type="text/css" media="screen">@import url(http://eprints.utas.edu.au/style/auto.css);</style> <style type="text/css" media="print">@import url(http://eprints.utas.edu.au/style/print.css);</style> <link rel="icon" href="/images/eprints/favicon.ico" type="image/x-icon" /> <link rel="shortcut icon" href="/images/eprints/favicon.ico" type="image/x-icon" /> <link rel="Top" href="http://eprints.utas.edu.au/" /> <link rel="Search" href="http://eprints.utas.edu.au/cgi/search" /> <meta content="Lickfold, V." name="eprints.creators_name" /> <meta content="Cooke, D.R." name="eprints.creators_name" /> <meta content="Smith, S.G." name="eprints.creators_name" /> <meta content="Ullrich, T." name="eprints.creators_name" /> <meta name="eprints.creators_id" /> <meta content="David.Cooke@utas.edu.au" name="eprints.creators_id" /> <meta name="eprints.creators_id" /> <meta name="eprints.creators_id" /> <meta content="article" name="eprints.type" /> <meta content="2007-10-09 16:53:36" name="eprints.datestamp" /> <meta content="2008-01-23T04:01:49Z" name="eprints.lastmod" /> <meta content="show" name="eprints.metadata_visibility" /> <meta content="Endeavour copper-gold porphyry deposits, Northparkes, New South Wales: intrusive history and fluid evolution" name="eprints.title" /> <meta content="pub" name="eprints.ispublished" /> <meta content="260100" name="eprints.subjects" /> <meta content="restricted" name="eprints.full_text_status" /> <meta content="porphyry, copper, gold, alkalic, monzonite, geochronology" name="eprints.keywords" /> <meta content="Four economic porphyry copper-gold deposits, Endeavour 22, 26, 27, and 48, occur within the Late Ordovician Goonumbla Volcanic Complex of central-west New South Wales, Australia. Together these deposits have a combined ore reserve of 63.6 million metric tons (Mt) at 1.1 percent copper and 0.5 g/t gold. Mineralization is centered in narrow, pipelike quartz monzonite porphyry (QMP) intrusive complexes. We have recognized at least nine intrusive phases within the Endeavour deposits. These are, in order of emplacement, as follows: a premineral equigranular monzodiorite; early-mineral, equigranular to weakly porphyritic biotite quartz monzonite (BQM) stocks and dikes; synmineral K-feldspar QMP (K-QMP) pipes and dikes; late-mineral augite-biotite–K-feldspar QMP (KA-QMP) intrusions and biotite QMP (B-QMP) dikes; and postmineral basaltic trachyandesite dikes, augite monzonite porphyry dikes, and basaltic dikes. Early-stage biotite-magnetite and propylitic alteration of the host volcanic rocks and K-feldspar alteration of the BQM occurred at each deposit during the intrusion of the BQM stocks and early-mineral B-QMP dikes. Transitional-stage unidirectional solidification textures and other related anisotropic textures formed mostly during the emplacement of K-QMP and KA-QMP intrusions. Main-stage sulfide mineralization at all four deposits is spatially and temporally associated with the K-QMP and, to a lesser extent, KA-QMP intrusions and their associated K-feldspar and sericite-hematite alteration assemblages, and is characterized by multiple generations of stockwork and sheeted quartz, K-feldspar, bornite, chalcopyrite, and gold-bearing veins. Late-stage sericite-quartz-copper-sulfide-carbonate-hematite alteration and vein assemblages formed prior to the emplacement of the postmineral intrusions. Weak to moderate postmineral propylitic alteration assemblages were the last alteration event related to the QMP intrusive complexes. Intrusive activity and associated biotite alteration occurred between 446 and 437 Ma, based on 40Ar/39Ar analyses of biotite and hornblende. Based on microthermometric analyses of fluid inclusions from early-, transitional-, main-, and late-stage veins, the Endeavour deposits formed at depths between 1,000 and 1,700 m below the paleosurface, with a lithostatic pressure regime prevailing throughout the early, transitional, and main stages and near-hydrostatic pressures during the late-stage sericitic events. The first three stages were dominated by high-temperature (460°–>550°C) magmatic-hydrothermal brines with salinities of ~55 to 60 wt percent NaCl ± KCl equiv. Although the late-stage fluids were cooler (350°–400°C) and less saline (~40 wt % NaCl equiv), their compositions are consistent with the magmatic-hydrothermal origin indicated by previous oxygen and hydrogen isotope studies, confirming that the Endeavour porphyry deposits are representatives of the orthomagmatic end member of the porphyry continuum." name="eprints.abstract" /> <meta content="2003-12" name="eprints.date" /> <meta content="published" name="eprints.date_type" /> <meta content="Economic Geology" name="eprints.publication" /> <meta content="98" name="eprints.volume" /> <meta content="8" name="eprints.number" /> <meta content="1607-1636" name="eprints.pagerange" /> <meta content="10.2113/98.8.1607" name="eprints.id_number" /> <meta content="TRUE" name="eprints.refereed" /> <meta content="0361-0128" name="eprints.issn" /> <meta content="http://dx.doi.org/10.2113/98.8.1607" name="eprints.official_url" /> <meta content="Arundell, M.C., 1998, The geology and mineralization of the E31 coppergold prospect, Goonumbla, NSW: Unpublished Master of Economic Geology thesis, Hobart, Australia, University of Tasmania, 82 p. Bodnar, R.J., Burnham, C.W., and Sterner, S.M., 1985, Synthetic inclusions in natural quartz, III. Determination of phase equilibrium properties in the system H2O-NaCl to 1000ºC and 1500 bars: Geochimica et Cosmochimica Acta, v. 49, p. 1861–1873. Bodnar, R.J., Sterner, S.M., and Hall, D.L., 1989, SALTY: A Fortran program to calculate the compositions of fluid inclusions in the system NaCl-KCl- H2O: Computers and Geosciences, v. 15, p. 14–41. Bowman, H.N., Richardson, S.J., and Dolanski, J., 1982, Narromine 1:250 000 metallogenic map SI 55-3—mine data sheets and metallogenic study: New South Wales Geological Survey, 337 p. Butera, K.M., Williams, I.S., Blevin, P.L., and Simpson, C.J., 2001, Zircon UPb dating of Early Palaeozoic monzonitic intrusives from the Goonumbla area, New South Wales: Australian Journal of Earth Sciences, v. 48, p. 457–464. Carten, R., 1986, Sodium-calcium metasomatism: Chemical, temporal, and spatial relationships at the Yerington, Nevada, porphyry copper deposit: ECONOMIC GEOLOGY, v. 81, p. 1495–1519. Carten, R.B., Walker, B.M., and Geraghty, E.P., 1988, Comparison of fieldbased studies of the Henderson porphyry molybdenum deposit, Colorado, with experimental and theoretical models of porphyry systems: Canadian Institute of Mining and Metallurgy Special Volume 39, p. 351–366. Cline, J.S. and Bodnar, R.J., 1994, Direct evolution of brine from a crystallizing silicic melt at the Questa, New Mexico, molybdenum deposit: ECONOMIC GEOLOGY, v. 89, p. 1780–1802. Clode, C., Profett, J., Mitchell, P., and Manumit, I., 1999, Relationships on intrusion, wall-rock alteration and mineralization in the Batu Hijau coppergold porphyry deposit: Australasian Institute of Mining and Metallurgy, of Pacrim ‘99, Bali, Indonesia, Proceedings, p. 485–498. Cooke, D.R. and Bloom, M.S.,1990, Epithermal and subjacent porphyry mineralization, Acupan, Baguio district, Philippines: A fluid-inclusion and paragenetic study: Journal of Geochemical Exploration, v. 35, p. 297–340. Crawford, A.J., Cooke, D.R., and Glen, R.A., 2001, Final Report: CODESDMR- SPIRT Ordovician project: Unpublished report to Industry, Centre for Ore Deposit Research, Hobart, University of Tasmania, 527 p. Dilles, J.H., and Einaudi, M.T., 1992, Wall-rock alteration and hydrothermal flow paths about the Ann-Mason porphyry copper deposit, Nevada—a 6- km vertical reconstruction: ECONOMIC GEOLOGY, v. 87, p. 1963–2001. Duggan, M.B., Lyons, P., Raymond, O.L., Wallace, D.A., Wyborn, D., Young, G.C., Krynen, J.P., Scott, M.M., and Sherwin, L., 1999, Forbes geology: Australian Geological Survey Organisation Sheet S155-7. Glen, R.A., 1992, Thrust, extensional and strike-slip tectonics in an evolving Palaeozoic orogen—a structural synthesis of the Lachlan fold belt of southeastern Australia: Tectonophysics, v. 214, p. 341–380. Glen, R.A., and Walshe, J.L., 1999, Cross-structures in the Lachlan orogen: the Lachlan transverse zone example: Australian Journal of Earth Sciences, v. 46, p. 641–658. Gordon, M.J., 1990, The geology of E.L. 2908, Molong, and mineralization of the Endeavour 37 prospect, Goonumbla, NSW: Unpublished B.Sc. (Honors) thesis, Canberra, Australia, Australian National University, 109 p. Gustafson, L.B., and Hunt, J.P., 1975, The porphyry copper deposit at El Salvador, Chile: ECONOMIC GEOLOGY, v. 70, p. 857–912. Harris, A.C., 1997, Vein emplacement, E26N porphyry Cu-Au deposit, Goonumbla, New South Wales: Unpublished B.Sc. (Honors) thesis, Brisbane, Australia, University of Queensland, 102 p. Harris, A.C., and Golding, S.D., 2002, New evidence for magmatic-fluid-related phyllic alteration: Implications for the genesis of porphyry Cu deposits: Geology, v. 30, p. 335–338. Heithersay, P.S., 1991, The shoshonite-associated Endeavour 26 North porphyry copper-gold deposit, Goonumbla, NSW: Unpublished draft Ph.D. manuscript, Canberra, Australia, Australian National University, 187 p. Heithersay, P.S., and Walshe, J.L., 1995, Endeavour 26 North: A porphyry copper-gold deposit in the Late Ordovician shoshonitic Goonumbla Volcanic Complex, New South Wales, Australia: ECONOMIC GEOLOGY, v. 90, p. 1506–1532. Heithersay, P.S., O’Neill, W.J., van der Helder, P., Moore, C.R., and Harbon, P.G., 1990, Goonumbla porphyry copper district—Endeavour 26 North, Endeavour 22 and Endeavour 27 copper-gold deposits, in Hughes, F.E., ed., Geology of the mineral deposits of Australia and Papua New Guinea: Melbourne, Australasian Institute of Mining and Metallurgy, p. 1385–1398. Hooper, B., Heithersay, P.S., Mills, M.B., Lindhorst, J.W., and Freyberg, J., 1996, Shoshonite-hosted Endeavour 48 porphyry copper-gold deposit, Northparkes, central New South Wales: Australian Journal of Earth Sciences, v. 43, p. 179–288. House, M.J., 1994, Gold distribution at the E26 porphyry copper-gold deposit, NSW: Unpublished M.Sc. thesis, Hobart, Australia, University of Tasmania, 125 p. Howland-Rose, J.S., 1996, Fluid evolution at the Endeavour 48 porphyry Cu- Au deposit, Parkes, NSW: Unpublished B.Sc. (Honors) thesis, Newcastle, Australia, University of Newcastle, 87 p. Jones, B.M., 1991, Geological setting and genesis of the Endeavour 44 Au, Pb, Zn skarn, Parkes, NSW: Unpublished B.Sc. (Honors) thesis, Canberra, Australia, Australian National University, 72 p. Jones, G.J., 1985, The Goonumbla porphyry copper deposits, New South Wales: ECONOMIC GEOLOGY, v. 80, p. 591–613. Kirkham, R.V., and Sinclair, W.D., 1988, Comb quartz layers in felsic intrusions and their relationship to porphyry deposits: Canadian Institute of Mining and Metallurgy Special Volume 39, p. 50–71. Kolkert, R., 1998, Carbonate-base metal veins peripheral to the Goonumbla Cu-Au deposits—vectors to mineralized centers?: Unpublished B.Sc. (Honors) thesis, Hobart, Australia, University of Tasmania, 144 p. Krynen, J.P., Sherwin, L., and Clarke, I., 1990a, Geological setting of gold and copper mineralization in the Parkes area: Records of the Geological Survey of New South Wales, v. 23, pt. 1, p. 1–76. Lang, J.R., and Titley, S.R., 1998, Isotopic and geochemical characteristics of Laramide magmatic systems in Arizona and implication for the genesis of porphyry copper deposits: ECONOMIC GEOLOGY, v. 93, p. 138–170. Lickfold, V., 2002, Intrusive history and volatile evolution of the Endeavour porphyry Cu-Au deposits, Goonumbla district, NSW, Australia: Unpublished Ph.D. thesis, Hobart, Australia, University of Tasmania, 230 p. Lowell, J.D., and Guilbert, J.M., 1970, Lateral and vertical alteration-mineralization zoning in porphyry ore deposits: ECONOMIC GEOLOGY, v. 65, p. 373–408. Lowenstern, J.B., and Sinclair, W.D., 1996, Exsolved magmatic fluid and its role in the formation of comb-layered quartz at the Cretaceous Logtung WMo deposit, Yukon Territory, Canada: Transactions of the Royal Society of Edinburgh, Earth Sciences, v. 87, p. 291–303. Perkins, C., McDougall, I., and Claoué-Long, J., 1990, 40Ar/39Ar and U-Pb geochronology of the Goonumbla porphyry Cu-Au deposits, New South Wales, Australia: ECONOMIC GEOLOGY, v. 85, p. 1808–1824. Roddick, J.C., 1983, High precision intercalibration of 40Ar/39Ar standards: Geochimica et Cosmochimica Acta, v. 47, p. 887–898. Roedder, E., 1984, Fluid inclusions: Reviews in Mineralogy, v. 12, 644 p. Roedder, E., and Bodnar, R.J., 1980, Geologic pressure determinations from fluid inclusion studies: Annual Review of Earth and Planetary Sciences, v. 8, p. 263–301 Sandeman, H.J., Archibald, D.A., Grant, J., Villenueve, M.E., and Ford, F., 1999, Characterisation of the chemical composition and 40Ar-39Ar systematics of intralaboratory standard MAC-83 biotite: Geological Survey of Canada Radiogenic Age and Isotopic Studies Report 12, p. 13–26. Scheibner, E., and Basden, H., ed., 1998. Geology of New South Wales— synthesis: Geological Survey of New South Wales Memoir Geology 13, v. 2, 666 p. Shannon, J.R., Walker, B.M., Carten, R.B., and Geraghty, E.P., 1982, Unidirectional solidification textures and their significance in determining relative ages of intrusions at the Henderson mine, Colorado: Geology, v. 10, p. 293–297. Shepherd, T., Rankin, A.H., and Alderton, D.H.M., 1985, A practical guide to fluid inclusion studies: Glasgow, Blackie, 235 p. Sillitoe, R.H., and Gappe, I.M.J., 1984, Philippine porphyry copper deposits: Geologic setting and characteristics, CCOP/TP14, RAS/81/120, UNDP Technical support for regional offshore prospecting in East Asia: United Nations Development Programme, 89 p. Simpson, C., Cas, R.A.F., and Arundell, M.C., 2000, The Goonumbla caldera, Parkes, NSW: Fact or fiction? [abs.]: Australian Geological Convention, 15th, University of Technology, Sydney, Australia, 2000, Abstracts, p. 452. Smith, S.G., Burrell, P.S., Lye, L., Jones, P.J., Kolff van Ooster-wijk L., and Sharry, M.J., 2002, Blurring the brown & green—near mine exploration at Northparkes: Australian Institute of Geoscientists Bulletin 37, p. 63–67. Squires, V.E., 1992, The mineralization and alteration of the Endeavour 27 porphyry copper-gold deposit, Goonumbla, New South Wales: Unpublished B.Sc. (Honors) thesis, Sydney, Australia, University of Sydney, 123 p. Wilson, J.W.J., Kesler, S.E., Cloke, P.L., and Kelly, W.C., 1980, Fluid inclusion geochemistry of the Granisle and Bell porphyry copper deposits, British Columbia: ECONOMIC GEOLOGY, v. 75, p. 45–61. Wolfe, R.C., 1994, The geology, paragenesis and alteration geochemistry of the Endeavour 48 Cu-Au porphyry, Goonumbla NSW: Unpublished B.Sc. (Honors) thesis, Hobart, Australia, University of Tasmania, 102 p. Wolfe, R.C., Cooke, D.R., Hooper, B., and Heithersay, P.S., 1996, A magmatic origin for late-stage sericite-alunite alteration at the Endeavour 48 Cu-Au porphyry deposit, Goonumbla, NSW [abs.]: Geological Society of Australia, 13th Australian Geological Convention, Canberra, 1996, Abstracts, p. 480. Wyborn, D., 1992, The tectonic significance of Ordovician magmatism in the eastern Lachlan fold belt: Tectonophysics, v. 214, p. 177–192." name="eprints.referencetext" /> <meta content="Lickfold, V. and Cooke, D.R. and Smith, S.G. and Ullrich, T. (2003) Endeavour copper-gold porphyry deposits, Northparkes, New South Wales: intrusive history and fluid evolution. Economic Geology, 98 (8). pp. 1607-1636. ISSN 0361-0128" name="eprints.citation" /> <meta content="http://eprints.utas.edu.au/2060/1/Lickfold.Cooke.etal.ECONGEOL.2003.pdf" name="eprints.document_url" /> <link rel="schema.DC" href="http://purl.org/DC/elements/1.0/" /> <meta content="Endeavour copper-gold porphyry deposits, Northparkes, New South Wales: intrusive history and fluid evolution" name="DC.title" /> <meta content="Lickfold, V." name="DC.creator" /> <meta content="Cooke, D.R." name="DC.creator" /> <meta content="Smith, S.G." name="DC.creator" /> <meta content="Ullrich, T." name="DC.creator" /> <meta content="260100 Geology" name="DC.subject" /> <meta content="Four economic porphyry copper-gold deposits, Endeavour 22, 26, 27, and 48, occur within the Late Ordovician Goonumbla Volcanic Complex of central-west New South Wales, Australia. Together these deposits have a combined ore reserve of 63.6 million metric tons (Mt) at 1.1 percent copper and 0.5 g/t gold. Mineralization is centered in narrow, pipelike quartz monzonite porphyry (QMP) intrusive complexes. We have recognized at least nine intrusive phases within the Endeavour deposits. These are, in order of emplacement, as follows: a premineral equigranular monzodiorite; early-mineral, equigranular to weakly porphyritic biotite quartz monzonite (BQM) stocks and dikes; synmineral K-feldspar QMP (K-QMP) pipes and dikes; late-mineral augite-biotite–K-feldspar QMP (KA-QMP) intrusions and biotite QMP (B-QMP) dikes; and postmineral basaltic trachyandesite dikes, augite monzonite porphyry dikes, and basaltic dikes. Early-stage biotite-magnetite and propylitic alteration of the host volcanic rocks and K-feldspar alteration of the BQM occurred at each deposit during the intrusion of the BQM stocks and early-mineral B-QMP dikes. Transitional-stage unidirectional solidification textures and other related anisotropic textures formed mostly during the emplacement of K-QMP and KA-QMP intrusions. Main-stage sulfide mineralization at all four deposits is spatially and temporally associated with the K-QMP and, to a lesser extent, KA-QMP intrusions and their associated K-feldspar and sericite-hematite alteration assemblages, and is characterized by multiple generations of stockwork and sheeted quartz, K-feldspar, bornite, chalcopyrite, and gold-bearing veins. Late-stage sericite-quartz-copper-sulfide-carbonate-hematite alteration and vein assemblages formed prior to the emplacement of the postmineral intrusions. Weak to moderate postmineral propylitic alteration assemblages were the last alteration event related to the QMP intrusive complexes. Intrusive activity and associated biotite alteration occurred between 446 and 437 Ma, based on 40Ar/39Ar analyses of biotite and hornblende. Based on microthermometric analyses of fluid inclusions from early-, transitional-, main-, and late-stage veins, the Endeavour deposits formed at depths between 1,000 and 1,700 m below the paleosurface, with a lithostatic pressure regime prevailing throughout the early, transitional, and main stages and near-hydrostatic pressures during the late-stage sericitic events. The first three stages were dominated by high-temperature (460°–>550°C) magmatic-hydrothermal brines with salinities of ~55 to 60 wt percent NaCl ± KCl equiv. Although the late-stage fluids were cooler (350°–400°C) and less saline (~40 wt % NaCl equiv), their compositions are consistent with the magmatic-hydrothermal origin indicated by previous oxygen and hydrogen isotope studies, confirming that the Endeavour porphyry deposits are representatives of the orthomagmatic end member of the porphyry continuum." name="DC.description" /> <meta content="2003-12" name="DC.date" /> <meta content="Article" name="DC.type" /> <meta content="PeerReviewed" name="DC.type" /> <meta content="application/pdf" name="DC.format" /> <meta content="http://eprints.utas.edu.au/2060/1/Lickfold.Cooke.etal.ECONGEOL.2003.pdf" name="DC.identifier" /> <meta content="http://dx.doi.org/10.2113/98.8.1607" name="DC.relation" /> <meta content="Lickfold, V. and Cooke, D.R. and Smith, S.G. and Ullrich, T. (2003) Endeavour copper-gold porphyry deposits, Northparkes, New South Wales: intrusive history and fluid evolution. Economic Geology, 98 (8). pp. 1607-1636. 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border: solid 1px #ccc; padding: 3px"><tr> <td align="left"><a href="http://eprints.utas.edu.au/cgi/users/home">Login</a> | <a href="http://eprints.utas.edu.au/cgi/register">Create Account</a></td> <td align="right" style="white-space: nowrap"> <form method="get" accept-charset="utf-8" action="http://eprints.utas.edu.au/cgi/search" style="display:inline"> <input class="ep_tm_searchbarbox" size="20" type="text" name="q" /> <input class="ep_tm_searchbarbutton" value="Search" type="submit" name="_action_search" /> <input type="hidden" name="_order" value="bytitle" /> <input type="hidden" name="basic_srchtype" value="ALL" /> <input type="hidden" name="_satisfyall" value="ALL" /> </form> </td> </tr></table></td></tr> <tr> <td class="toplinks"><!-- InstanceBeginEditable name="content" --> <div align="center"> <table width="720" class="ep_tm_main"><tr><td align="left"> <h1 class="ep_tm_pagetitle">Endeavour copper-gold porphyry deposits, Northparkes, New South Wales: intrusive history and fluid evolution</h1> <p style="margin-bottom: 1em" class="not_ep_block"><span class="person_name">Lickfold, V.</span> and <span class="person_name">Cooke, D.R.</span> and <span class="person_name">Smith, S.G.</span> and <span class="person_name">Ullrich, T.</span> (2003) <xhtml:em>Endeavour copper-gold porphyry deposits, Northparkes, New South Wales: intrusive history and fluid evolution.</xhtml:em> Economic Geology, 98 (8). pp. 1607-1636. ISSN 0361-0128</p><p style="margin-bottom: 1em" class="not_ep_block"></p><table style="margin-bottom: 1em" class="not_ep_block"><tr><td valign="top" style="text-align:center"><a href="http://eprints.utas.edu.au/2060/1/Lickfold.Cooke.etal.ECONGEOL.2003.pdf"><img alt="[img]" src="http://eprints.utas.edu.au/style/images/fileicons/application_pdf.png" border="0" class="ep_doc_icon" /></a></td><td valign="top"><a href="http://eprints.utas.edu.au/2060/1/Lickfold.Cooke.etal.ECONGEOL.2003.pdf"><span class="ep_document_citation">PDF</span></a> - Full text restricted - Requires a PDF viewer<br />1108Kb</td><td><form method="get" accept-charset="utf-8" action="http://eprints.utas.edu.au/cgi/request_doc"><input value="2599" name="docid" accept-charset="utf-8" type="hidden" /><div class=""><input value="Request a copy" name="_action_null" class="ep_form_action_button" onclick="return EPJS_button_pushed( '_action_null' )" type="submit" /> </div></form></td></tr></table><p style="margin-bottom: 1em" class="not_ep_block">Official URL: <a href="http://dx.doi.org/10.2113/98.8.1607">http://dx.doi.org/10.2113/98.8.1607</a></p><div class="not_ep_block"><h2>Abstract</h2><p style="padding-bottom: 16px; text-align: left; margin: 1em auto 0em auto">Four economic porphyry copper-gold deposits, Endeavour 22, 26, 27, and 48, occur within the Late Ordovician Goonumbla Volcanic Complex of central-west New South Wales, Australia. Together these deposits have a combined ore reserve of 63.6 million metric tons (Mt) at 1.1 percent copper and 0.5 g/t gold. Mineralization is centered in narrow, pipelike quartz monzonite porphyry (QMP) intrusive complexes. We have recognized at least nine intrusive phases within the Endeavour deposits. These are, in order of emplacement, as follows: a premineral equigranular monzodiorite; early-mineral, equigranular to weakly porphyritic biotite quartz monzonite (BQM) stocks and dikes; synmineral K-feldspar QMP (K-QMP) pipes and dikes; late-mineral augite-biotite–K-feldspar QMP (KA-QMP) intrusions and biotite QMP (B-QMP) dikes; and postmineral basaltic trachyandesite dikes, augite monzonite porphyry dikes, and basaltic dikes. Early-stage biotite-magnetite and propylitic alteration of the host volcanic rocks and K-feldspar alteration of the BQM occurred at each deposit during the intrusion of the BQM stocks and early-mineral B-QMP dikes. Transitional-stage unidirectional solidification textures and other related anisotropic textures formed mostly during the emplacement of K-QMP and KA-QMP intrusions. Main-stage sulfide mineralization at all four deposits is spatially and temporally associated with the K-QMP and, to a lesser extent, KA-QMP intrusions and their associated K-feldspar and sericite-hematite alteration assemblages, and is characterized by multiple generations of stockwork and sheeted quartz, K-feldspar, bornite, chalcopyrite, and gold-bearing veins. Late-stage sericite-quartz-copper-sulfide-carbonate-hematite alteration and vein assemblages formed prior to the emplacement of the postmineral intrusions. Weak to moderate postmineral propylitic alteration assemblages were the last alteration event related to the QMP intrusive complexes. Intrusive activity and associated biotite alteration occurred between 446 and 437 Ma, based on 40Ar/39Ar analyses of biotite and hornblende. Based on microthermometric analyses of fluid inclusions from early-, transitional-, main-, and late-stage veins, the Endeavour deposits formed at depths between 1,000 and 1,700 m below the paleosurface, with a lithostatic pressure regime prevailing throughout the early, transitional, and main stages and near-hydrostatic pressures during the late-stage sericitic events. The first three stages were dominated by high-temperature (460°–>550°C) magmatic-hydrothermal brines with salinities of ~55 to 60 wt percent NaCl ± KCl equiv. Although the late-stage fluids were cooler (350°–400°C) and less saline (~40 wt % NaCl equiv), their compositions are consistent with the magmatic-hydrothermal origin indicated by previous oxygen and hydrogen isotope studies, confirming that the Endeavour porphyry deposits are representatives of the orthomagmatic end member of the porphyry continuum.</p></div><table style="margin-bottom: 1em" border="0" cellpadding="3" class="not_ep_block"><tr><th valign="top" class="ep_row">Item Type:</th><td valign="top" class="ep_row">Article</td></tr><tr><th valign="top" class="ep_row">Keywords:</th><td valign="top" class="ep_row">porphyry, copper, gold, alkalic, monzonite, geochronology</td></tr><tr><th valign="top" class="ep_row">Subjects:</th><td valign="top" class="ep_row"><a href="http://eprints.utas.edu.au/view/subjects/260100.html">260000 Earth Sciences > 260100 Geology</a></td></tr><tr><th valign="top" class="ep_row">Collections:</th><td valign="top" class="ep_row">UNSPECIFIED</td></tr><tr><th valign="top" class="ep_row">ID Code:</th><td valign="top" class="ep_row">2060</td></tr><tr><th valign="top" class="ep_row">Deposited By:</th><td valign="top" class="ep_row"><span class="ep_name_citation"><span class="person_name">Mrs Katrina Keep</span></span></td></tr><tr><th valign="top" class="ep_row">Deposited On:</th><td valign="top" class="ep_row">10 Oct 2007 03:53</td></tr><tr><th valign="top" class="ep_row">Last Modified:</th><td valign="top" class="ep_row">23 Jan 2008 15:01</td></tr><tr><th valign="top" class="ep_row">ePrint Statistics:</th><td valign="top" class="ep_row"><a target="ePrintStats" href="/es/index.php?action=show_detail_eprint;id=2060;">View statistics for this ePrint</a></td></tr></table><p align="right">Repository Staff Only: <a href="http://eprints.utas.edu.au/cgi/users/home?screen=EPrint::View&eprintid=2060">item control page</a></p> </td></tr></table> </div> <!-- InstanceEndEditable --></td> </tr> <tr> <td><!-- #BeginLibraryItem "/Library/footer_eprints.lbi" --> <table width="795" border="0" align="left" cellpadding="0" class="footer"> <tr valign="top"> <td colspan="2"><div align="center"><a href="http://www.utas.edu.au">UTAS home</a> | <a href="http://www.utas.edu.au/library/">Library home</a> | <a href="/">ePrints home</a> | <a href="/contact.html">contact</a> | <a href="/information.html">about</a> | <a href="/view/">browse</a> | <a href="/perl/search/simple">search</a> | <a href="/perl/register">register</a> | <a href="/perl/users/home">user area</a> | <a href="/help/">help</a></div><br /></td> </tr> <tr><td colspan="2"><p><img src="/images/eprints/footerline.gif" width="100%" height="4" /></p></td></tr> <tr valign="top"> <td width="68%" class="footer">Authorised by the University Librarian<br /> © University of Tasmania ABN 30 764 374 782<br /> <a href="http://www.utas.edu.au/cricos/">CRICOS Provider Code 00586B</a> | <a href="http://www.utas.edu.au/copyright/copyright_disclaimers.html">Copyright & Disclaimers</a> | <a href="http://www.utas.edu.au/accessibility/index.html">Accessibility</a> | <a href="http://eprints.utas.edu.au/feedback/">Site Feedback</a> </td> <td width="32%"><div align="right"> <p align="right" class="NoPrint"><a href="http://www.utas.edu.au/"><img src="http://www.utas.edu.au/shared/logos/unioftasstrip.gif" alt="University of Tasmania Home Page" width="260" height="16" border="0" align="right" /></a></p> <p align="right" class="NoPrint"><a href="http://www.utas.edu.au/"><br /> </a></p> </div></td> </tr> <tr valign="top"> <td><p> </p></td> <td><div align="right"><span class="NoPrint"><a href="http://www.eprints.org/software/"><img src="/images/eprintslogo.gif" alt="ePrints logo" width="77" height="29" border="0" align="bottom" /></a></span></div></td> </tr> </table> <!-- #EndLibraryItem --> <div align="center"></div></td> </tr> </table> </body> </html>