Timing and formation of porphyry Cu-Mo mineralization in the Chuquicamata district, northern Chile: new constraints from the Toki cluster

被引:46
|
作者
Barra, Fernando [1 ,2 ]
Alcota, Hugo [3 ]
Rivera, Sergio [3 ,5 ]
Valencia, Victor [4 ]
Munizaga, Francisco [1 ]
Maksaev, Victor [1 ]
机构
[1] Univ Chile, Dept Geol, Santiago, Chile
[2] Univ Chile, Andean Geothermal Ctr Excellence CEGA, Santiago, Chile
[3] Exploraciones Mineras Andinas SA, Santiago, Chile
[4] Washington State Univ, Sch Environm, Pullman, WA USA
[5] Coro Min Corp, Santiago, Chile
基金
美国国家科学基金会;
关键词
RE-OS GEOCHRONOLOGY; COPPER-DEPOSIT; ESCONDIDA AREA; ICP-MS; U-PB; EVOLUTION; MOLYBDENITE; 40AR/39AR; RHENIUM; GEOLOGY;
D O I
10.1007/s00126-012-0452-1
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The recently discovered Toki cluster, which includes the Toki, Quetena, Genoveva, Miranda, and Opache porphyry Cu-Mo prospects, is located 15 km south-southwest of the Chuquicamata-Radomiro Tomic mines in northern Chile. These prospects occur in an area of 5 x 6 km and are completely covered with Neogene alluvial deposits. Inferred resources for the cluster are estimated at about 20 Mt of fine copper, with Toki and Quetena contributing similar to 88 % of these resources. Mineralization in these deposits is associated with tonalite porphyries that intruded andesites and dacites of the Collahuasi Group and intrusions of the Fortuna-Los Picos Granodioritic Complex. Hypogene mineralization in the Toki cluster consists mainly of chalcopyrite-bornite with minor molybdenite with mineralization grading outward to a chalcopyrite-pyrite zone and ultimately to a pyrite halo. Alteration is dominantly of the potassic type with K-feldspar and hydrothermal biotite. Sericitic alteration is relatively restricted to late quartz-pyrite veins (D-type veins). Previous K-Ar geochronology for the cluster yielded ages within a range of 34 to 40 Ma. Four new Re-Os ages for Toki indicate that molybdenite mineralization occurred in a single pulse at similar to 38 Ma. Re-Os ages for three different molybdenite samples from Quetena are within error of the Toki mineralization ages. These ages are concordant with a new zircon U-Pb age of 38.6 +/- 0.7 Ma from the tonalite porphyry in Quetena. Two Re-Os ages for Genoveva (38.1 +/- 0.2 and 38.0 +/- 0.2 Ma) are also within error of the Toki and Quetena molybdenite ages. Four Re-Os molybdenite ages for Opache range between 36.4 and 37.6 Ma. The Miranda prospect is the youngest with an age of similar to 36 Ma. Four new Re-Os ages for the Chuquicamata deposit range between 33 and 32 Ma, whereas nine new 40Ar/39Ar ages of biotite, muscovite, and K-feldspar range between 32 and 31 Ma. Analyzed molybdenites have Re and Os concentrations that vary between 21-3,099 ppm and 8-1,231 ppb, respectively. The highest Re and Os concentrations are found in the Toki prospect. Three new 40Ar/39Ar ages for the Toki cluster are younger than the Re-Os mineralization ages. The age spectra for these three samples show evidence of excess argon and have similar inverse isochron ages of 35 Ma that probably reflect a late hydrothermal phyllic event. The new geochronological data presented here for the Toki cluster indicate that molybdenite mineralization occurred within a very short period, probably within 2 Ma, and synchronously (at similar to 38 Ma) in three mineralization centers (Toki, Quetena, and Genoveva). Furthermore, mineralization at the Toki cluster preceded the emplacement of the Chuquicamata deposit (35-31 Ma) and indicates that porphyry Cu-Mo mineralization occurred episodically over a period of several million years in the Chuquicamata district.
引用
收藏
页码:629 / 651
页数:23
相关论文
共 50 条
  • [1] Timing and formation of porphyry Cu–Mo mineralization in the Chuquicamata district, northern Chile: new constraints from the Toki cluster
    Fernando Barra
    Hugo Alcota
    Sergio Rivera
    Victor Valencia
    Francisco Munizaga
    Victor Maksaev
    Mineralium Deposita, 2013, 48 : 629 - 651
  • [2] The Distribution and Timing of Molybdenite Mineralization at the El Teniente Cu-Mo Porphyry Deposit, Chile
    Spencer, Edward T.
    Wilkinson, Jamie J.
    Creaser, Robert A.
    Seguel, Jose
    ECONOMIC GEOLOGY, 2015, 110 (02) : 387 - 421
  • [3] Relationship Between Hydrothermal Alteration Index and Geological Attributes at Chuquicamata Cu-Mo Porphyry Deposit, Chile
    Veliz, Hector
    Campos, Eduardo
    Menzies, Andrew
    Valdivia, Ljubitza
    RESOURCE GEOLOGY, 2017, 67 (02) : 158 - 173
  • [4] Laramide porphyry Cu-Mo mineralization in northern Mexico:: Age constraints from Re-Os geochronology in molybdenite
    Barra, F
    Ruiz, J
    Valencia, VA
    Ochoa-Landín, L
    Chesley, JT
    Zurcher, L
    ECONOMIC GEOLOGY, 2005, 100 (08) : 1605 - 1616
  • [5] The formation of Luoboling porphyry Cu-Mo deposit: Constraints from zircon and apatite
    Li, Cong-ying
    Hao, Xi-luo
    Liu, Ji-qiang
    Ling, Ming-xing
    Ding, Xing
    Zhang, Hong
    Sun, Wei-Dong
    LITHOS, 2017, 272 : 291 - 300
  • [6] On the Formation Conditions of Porphyry Cu-Mo Polymetallic Deposits in the Xiaosigou District
    陈银汉
    ChineseJournalofGeochemistry(EnglishLanguageEdition), 1987, (02) : 140 - 152
  • [7] Spatial coincidence and similar geochemistry of Late Triassic and Eocene-Oligocene magmatism in the Andes of northern Chile: evidence from the MMH porphyry type Cu-Mo deposit, Chuquicamata District
    Zentilli, Marcos
    Maksaev, Victor
    Boric, Ricardo
    Wilson, Jessica
    INTERNATIONAL JOURNAL OF EARTH SCIENCES, 2018, 107 (03) : 1097 - 1126
  • [8] Molybdenum transport and mineralization at the El Teniente Cu-Mo porphyry deposit, Chile.
    Spencer, Edward T.
    Vry, Victoria H.
    Wilkinson, Jamie J.
    Berry, Andrew J.
    Seguel, Jose
    LET'S TALK ORE DEPOSITS, VOLS I AND II, 2011, : 374 - 376
  • [9] Synextensional Emplacement of Porphyry Cu-Mo and Epithermal Mineralization: The Zijinshan District, Southeastern China
    Piquer, Jose
    Cooke, David R.
    Chen, Jing
    Zhang, Lejun
    ECONOMIC GEOLOGY, 2017, 112 (05) : 1055 - 1074
  • [10] Constraints on the origin of adakites and porphyry Cu-Mo mineralization in Chongjiang, Southern Gangdese, the Tibetan Plateau
    Hu, Yong-bin
    Liu, Ji-qiang
    Ling, Ming-xing
    Liu, Yan
    Ding, Xing
    Liu, Dun-yi
    Sun, Wei-dong
    LITHOS, 2017, 292 : 424 - 436