2017 Vol. 36, No. 12
Article Contents

ZHAO Yuhao, MAO Dahua, WANG Tiangang, ZHAO Xiaodan, ZHU Yiping. Geology and mineralization of the Candelaria-Punta del Cobre Fe oxide Cu-Au deposits, Chile[J]. Geological Bulletin of China, 2017, 36(12): 2296-2307.
Citation: ZHAO Yuhao, MAO Dahua, WANG Tiangang, ZHAO Xiaodan, ZHU Yiping. Geology and mineralization of the Candelaria-Punta del Cobre Fe oxide Cu-Au deposits, Chile[J]. Geological Bulletin of China, 2017, 36(12): 2296-2307.

Geology and mineralization of the Candelaria-Punta del Cobre Fe oxide Cu-Au deposits, Chile

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  • There is a 5km wide and 20km long belt of Fe oxide Cu-Au deposits along the eastern margin of the coastal batholith near Copiapó, Chile. It includes the Candelaria deposit and a group of middle and small sized deposits in the Punta del Cobre district, which is located about 3km northeast of the Candelaria mine. It is estimated that the amount of copper ore resources in the belt is 700-800 million tons at 1.0 percent Cu. The ore minerals are mainly chalcopyrite, pyrite, magnetite, hematite. The ores occur in veins, breccia and stringer bodies. The orebodies are hosted mainly by volcanic and volcaniclastic rocks of the Punta del Cobre Formation. Most of the larger orebodies in the belt are situated along NW to NNW trending high-angle brittle faults which intersect the contact between massive volcanic and volcaniclastic rocks. The ores occur mainly in zones with biotite-K feldspar±calcic amphibole±epidote alteration at Candelaria. In the Punta del Cobre district, alteration associated with ores in the deeper parts of the deposits is similar to that at Candelaria, whereas at their shallow levels ores occur in biotite-K-feldspar or albite-chlorite±calcite alteration zones.

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  • [1] Marschik R, Leveille R A, Martin W.La Candelaria and the Punta del Cobre district, Chile:Early Cretaceous iron oxide cu-au (-ZnAg) mineralization[J].Hydrothermal iron oxide copper-gold and related deposits, 2000, 1:163-175.

    Google Scholar

    [2] Segerstrom K, Ruiz C.Geología del Cuadrángulo Copiapó, Provincia de Atacama[J].Carta Geológica de Chile, 1962, 3(1):115

    Google Scholar

    [3] Hitzman M W, Oreskes N, Einaudi M T.Geological characteristics and tectonic setting of proterozoic iron oxide (Cu-U-Au-REE) deposits[J].Precambrian Research, 1992, 58(1/4):241-287.

    Google Scholar

    [4] Gow P A, Wall V J, Oliver N H S, et al.Proterozoic iron oxide (Cu-U-Au-REE) deposits:Further evidence of hydrothermal origins[J].Geology, 1994, 22(7):633-636. doi: 10.1130/0091-7613(1994)022<0633:PIOCUA>2.3.CO;2

    CrossRef Google Scholar

    [5] Rotherham J F, Blake K L, Cartwright I, et al.Stable isotope evidence for the origin of the Mesoproterozoic Starra Au-Cu deposit, Cloncurry district, northwest Queensland[J].Economic Geology, 1998, 93(8):1435-1449. doi: 10.2113/gsecongeo.93.8.1435

    CrossRef Google Scholar

    [6] Williams P J.Metalliferous economic geology of the Mt Isa eastern succession, Queensland[J].Australian Journal of Earth Sciences, 1998, 45(3):329-341. doi: 10.1080/08120099808728395

    CrossRef Google Scholar

    [7] Williams P J, Dong G, Pollard P J, et al.Fluid inclusion geochemistry of Cloncurry (Fe)-Cu-Au deposits[J].Mineral deposits:Processes to processing:Rotterdam, Balkema, 1999, 1:111-114.

    Google Scholar

    [8] Battles D A, Barton M D.Arc-related sodic hydrothermal alteration in the western United States[J].Geology, 1995, 23(10):913-916. doi: 10.1130/0091-7613(1995)023<0913:ARSHAI>2.3.CO;2

    CrossRef Google Scholar

    [9] Haynes D W, Cross K C, Bills R T, et al.Olympic Dam ore genesis:a fluid-mixing model[J].Economic Geology, 1995, 90(2):281-307. doi: 10.2113/gsecongeo.90.2.281

    CrossRef Google Scholar

    [10] Barton M D, Johnson D A.Evaporitic-source model for igneousrelated Fe oxide-(REE-Cu-Au-U) mineralization[J].Geology, 1996, 24(3):259-262. doi: 10.1130/0091-7613(1996)024<0259:ESMFIR>2.3.CO;2

    CrossRef Google Scholar

    [11] Hopf S.The Agustina mine, a volcanic-hosted copper deposit in northern Chile[C]//Stratabound Ore Deposits in the Andes.Springer Berlin Heidelberg, 1990:421-434.http://link.springer.com/chapter/10.1007/978-3-642-88282-1_32

    Google Scholar

    [12] Marschik R, Fontboté L.Copper (-iron) mineralization and superposition of alteration events at the Punta del Cobre belt, northern Chile[J].Special Publication of the Society of Economic Geologists, 1996, 5:171-189.

    Google Scholar

    [13] Ullrich T D, Clark A H.The Candelaria copper-gold deposit, Region Ⅲ, Chile:Paragenesis, geochronology and fluid composition[C]//Mineral deposits:Processes to processing:Rotterdam, Balkema, 1999:201-204.https://www.researchgate.net/publication/309456889_The_Candelaria_copper-gold_deposit_Region_III_Chile_Paragenesis_geochronology_and_fluid_composition

    Google Scholar

    [14] Mathur R, Marschik R, Ruiz J, et al.Age of mineralization of the Candelaria Fe oxide Cu-Au deposit and the origin of the Chilean iron belt, based on Re-Os isotopes[J].Economic Geology, 2002, 97(1):59-71. doi: 10.2113/gsecongeo.97.1.59

    CrossRef Google Scholar

    [15] Scheuber E, Hammerschmidt K, Friedrichsen H.40 Ar/39 Ar and Rb-Sr analyses from ductile shear zones from the Atacama Fault Zone, northern Chile:the age of deformation[J].Tectonophysics, 1995, 250(1):61-87.

    Google Scholar

    [16] Dallmeyer R D, Brown M, Grocott J, et al.Mesozoic Magmatic and Tectonic Events within the Andean Plate Boundary Zone, 26°-27°30'S, North Chile:Constraints from Mineral Ages[J].The Journal of Geology, 1996, 104(1):19-40. doi: 10.1086/629799

    CrossRef Google Scholar

    [17] Menard J J.Relationship between altered pyroxene diorite and the magnetite mineralization in the Chilean Iron Belt, with emphasis on the El Algarrobo iron deposits (Atacama region, Chile)[J].Mineralium Deposita, 1995, 30(3):268-274.

    Google Scholar

    [18] Tilling R.El Batolito Andino cerca de Copiapó, Provincía de Atacama.Geologíay Petrología[J].Revista Geológica de Chile, 1976, 3:1-24.

    Google Scholar

    [19] Marschik R, Fontboté L.The Punta del Cobre Formation, Punta del Cobre-Candelaria area, northern Chile[J].Journal of South American Earth Sciences, 2001, 14(4):401-433. doi: 10.1016/S0895-9811(01)00036-0

    CrossRef Google Scholar

    [20] Arévalo C, Grocott J, Martin W, et al.Structural Setting of the Candelaria Fe Oxide Cu-Au Deposit, Chilean Andes (27°30'S)[J].Economic Geology, 2006, 101(4):819-841. doi: 10.2113/gsecongeo.101.4.819

    CrossRef Google Scholar

    [21] Arévalo C, Grocott J.The tectonic setting of the Chañarcillo Group and the Bandurrias Formation:An Early-Late Cretaceous sinistral transpressive belt between the Coastal Cordillera and the Precordillera, Atacama region, Chile[J]:Congreso Geológico Chileno, 8th, Antofagasta, 1997, 3:1604-1607.

    Google Scholar

    [22] 方维萱, 李建旭.智利铁氧化物铜金型矿床成矿规律、控制因素与成矿演化[J].地球科学进展, 2014, 29(9):1011-1024. doi: 10.11867/j.issn.1001-8166.2014.09.1011

    CrossRef Google Scholar

    [23] 李建旭, 方维萱, 刘家军.智利铁氧化物-铜-金矿床区域定位构造-矿田构造类型与特征[J].地质与勘探, 2011, 47(2):323-332.

    Google Scholar

    [24] Ryan P J, Lawrence A L, Jenkins R A, et al.The Candelaria copper-gold deposit, Chile[J].Arizona Geological Society Digest, 1995, 20:625-645.

    Google Scholar

    [25] Sillitoe R H, Clark A H.Copper and copper iron sulphides as the initial products of supergene oxidation, Copiapó mining district, northern Chile[J].American Mineralogist, 1969, 54(11-1):1684-1710.

    Google Scholar

    [26] Marschik R, Fontboté L.The Candelaria-Punta del Cobre iron oxide Cu-Au(-Zn-Ag) deposits, Chile[J].Economic Geology, 2001, 96(8):1799-1826.

    Google Scholar

    [27] Marschik R, Singer B S, Munizaga F, et al.Age of Cu (-Fe)-Au mineralization and thermal evolution of the Punta del Cobre district, Chile[J].Mineralium Deposita, 1997, 32(6):531-546. doi: 10.1007/s001260050120

    CrossRef Google Scholar

    [28] Taylor G K, Grocott J, Pope A, et al.Mesozoic fault systems, deformation and fault block rotation in the Andean forearc:a crustal scale strike-slip duplex in the Coastal Cordillera of northern Chile[J].Tectonophysics, 1998, 299(1):93-109.

    Google Scholar

    [29] Mpodozis C, Allmendinger R W.Extensional tectonics, Cretaceous Andes, northern Chile (27°S)[J].Geological Society of America Bulletin, 1993, 105(11):1462-1477. doi: 10.1130/0016-7606(1993)105<1462:ETCANC>2.3.CO;2

    CrossRef Google Scholar

    [30] Perez E, Cooper M R, Covacevich V.Aptian ammonite-based age for the Pabellón Formation, Atacama Region, northern Chile[J].Andean Geology, 1990, 17(2):181-185.

    Google Scholar

    [31] Vila T.Geology of the Manto Verde copper deposit, northern Chile:a speculariterich, hydrothermal-tectonic breccia related to the Atacama fault zone[C]//Andean Copper Deposits:New Discoveries, Mineralization Styles and Metallogeny.Soc.Econ.Geol.Spec.Publ.1996, 5:157-169.

    Google Scholar

    [32] Orrego M, Zamora R.Manto Ruso:Un yacimiento de cobre ligado a la Falla de Atacama, Norte de Chile[J].Actas 6th Congr.Geol.Chileno.1991, 1:174-178.

    Google Scholar

    [33] Hopper D, Correa A.The Panulcillo and Teresa de Colmo copper deposits:Two contrasting examples of Fe-ox Cu-Au mineralization from the coastal Cordillera of Chile[C]//Porter T M.Hydrothermal iron oxide copper-gold and related deposits:A global perspective.Australian Mineral Foundation, Adelaide, 2000:177-189.

    Google Scholar

    [34] Cesar E, Vidal C, Injoque-Espinoza J, et al.Amphibolitic Cu-Fe skarn deposits in the central coast of Peru[J].Economic Geology, 1990, 85(7):1447-1461. doi: 10.2113/gsecongeo.85.7.1447

    CrossRef Google Scholar

    [35] Vivallo W, Espinoza S, Henriquez F.Metasomatismo y alteración hidrotermal en el distrito ferrífero Cerro Negro Norte, Copiapó, Chile[J].Andean Geology, 1995, 22(1):75-88.

    Google Scholar

    Arévalo C. The Coastal Cordillera-Precordillera boundary in the Copiapó area, northern Chile and the structural setting of the Candelaria Cu-Au ore deposit. Kingston University, 1999.

    Google Scholar

    Arévalo C. Mapa Geológico de la Hoja Copiapó, Región de Atacama: Santiago,Chile, SERNAGEOMIN, Documentos de Trabajo 8, scale 1∶ 100000, 1995.

    Google Scholar

    Rotherham J F. Origin and Fluid Chemistry of the Starra Ironstones and High Grade Au- cu Mineralisation, Cloncurry District, Mount Isa Inlier, Australia. James Cook University of North Queensland, 1997.

    Google Scholar

    Haller A. The Raul-Condestable iron oxides-Cu-Au deposit, Lima department, Peru: preliminary results. Abstract volume & Field trip guidebook, 2000.

    Google Scholar

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