Superimposed mineralization and emplacement paleodepth of the Laozuoshan Cu-Au deposit in the Jiamusi block: Evidence from garnet U-Pb geochronology and mineral geochemistry

被引:1
作者
Sun, Fanting [1 ]
Zhao, Chuntao [2 ]
Sun, Jinggui [1 ]
Bai, Chenglin [1 ]
Liu, Yang [1 ]
Chu, Xiaolei [1 ]
Xu, Zhikai [1 ]
Han, Jilong [3 ]
机构
[1] Jilin Univ, Coll Earth Sci, Changchun 130061, Peoples R China
[2] Chinese Acad Sci, Qinghai Inst Salt Lakes, Key Lab Comprehens & Highly Efficient Utilizat Sal, Qinghai Prov Key Lab Geol & Environm Salt Lake, Xining, Peoples R China
[3] China Univ Geosci, Sch Earth Sci & Resources, Beijing 100083, Peoples R China
基金
中国国家自然科学基金;
关键词
Garnet U-Pb geochronology; Mineral geochemistry; Porphyry-skarn superimposed Cu-Au metal-logenic system; Metallogenic potential; Laozuoshan deposit; Jiamusi block; EPITHERMAL GOLD DEPOSITS; ZIRCON; SKARN; STABILITY; PROVINCE; COMPLEX; MARGIN; COPPER;
D O I
10.1016/j.gexplo.2023.107237
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 Laozuoshan deposit is a large superimposed Cu-Au deposit composed of three ore zones (eastern, middle, and western). A large number of studies have revealed that the middle zone and eastern zone are skarn gold deposits formed by the contact metasomatism between a Late Paleozoic granodioritic magma and Mashan Group carbonate strata, while the western zone is a porphyry copper-gold deposit related to the hypabyssal emplace-ment of an Early Cretaceous dioritic-granodioritic magma. Therefore, is there mineralization related to this Early Cretaceous dioritic-granodioritic magmatism in the middle and eastern zones? To determine whether there was Early Cretaceous magmatism in the middle and eastern zones, diorite, diorite porphyrite and granodiorite porphyry, which are closely related to the skarn copper-gold mineralization in the eastern zone, were selected for study in this paper. Accurate garnet U-Pb isotope dating and chemical analysis of minerals reveal the following: (1) The formation age of the skarn copper-gold mineralization (104 Ma) is basically consistent with the emplacement time of the dioritic magma (103-106 Ma), which occurred in the Early Cretaceous. (2) The high temperature (722-802 degrees C), weak oxidation-reduction conditions (Delta FMQ = - 4.82 -+0.24; log(integral O2) =-21.2 --19.0),high water content (5.69-7.13 wt%) and shallow emplacement characteristics of the Early Cretaceous dioritic magma indicate that this magma had the potential to provide thermogenic minerals. (3) The geochemical characteristics of the skarn minerals reveal that the Early Cretaceous mineralization of the Laozuoshan deposit represents a calcareous reducing skarn copper-gold metallogenic system. Combining the mineralization and alteration characteristics of the three zones and previous work, this study further concludes that the Laozuoshan deposit is a superimposed metallogenic system involving a Late Permian skarn Au metallogenic system (eastern zone and middle zone) and an Early Cretaceous porphyry (western zone)-skarn (eastern zone and middle zone) Cu-Au system. The deep part of the mining area has the potential for searching for porphyry Cu-Au deposits.
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页数:19
相关论文
共 74 条
  • [1] The multiple mineralizations and geodynamic settings of the Laozuoshan Cu-Au deposit in the Jiamusi Massif, NE China: Zircon U-Pb geochronological, elemental and Hf isotopic geochemical evidence
    Bai, Cheng-lin
    Sun, Jing-gui
    Zhao, Chun-tao
    Qin, Ke-zhang
    Liu, Yang
    Chu, Xiao-lei
    Xu, Zhi-kai
    Li, Yi-xin
    [J]. ORE GEOLOGY REVIEWS, 2021, 137
  • [2] THE FO2-T AND FS2-T STABILITY RELATIONS OF HEDENBERGITE AND OF HEDENBERGITE-JOHANNSENITE SOLID-SOLUTIONS
    BURTON, JC
    TAYLOR, LA
    CHOU, IM
    [J]. ECONOMIC GEOLOGY, 1982, 77 (04) : 764 - 783
  • [3] The mineralogy of copper-bearing skarn to the east of the Sungun-Chay river, East-Azarbaidjan, Iran
    Calagari, Ali Asghar
    Hosseinzadeh, Ghader
    [J]. JOURNAL OF ASIAN EARTH SCIENCES, 2006, 28 (4-6) : 423 - 438
  • [4] Amphibole Geochemistry of the Yanacocha Volcanics, Peru: Evidence for Diverse Sources of Magmatic Volatiles Related to Gold Ores
    Chambefort, Isabelle
    Dilles, John H.
    Longo, Anthony A.
    [J]. JOURNAL OF PETROLOGY, 2013, 54 (05) : 1017 - 1046
  • [5] Tempo of magma degassing and the genesis of porphyry copper deposits
    Chelle-Michou, Cyril
    Rottier, Bertrand
    Caricchi, Luca
    Simpson, Guy
    [J]. SCIENTIFIC REPORTS, 2017, 7
  • [6] Gold endowments of porphyry deposits controlled by precipitation efficiency
    Chiaradia, Massimo
    [J]. NATURE COMMUNICATIONS, 2020, 11 (01)
  • [7] Stochastic modelling of deep magmatic controls on porphyry copper deposit endowment
    Chiaradia, Massimo
    Caricchi, Luca
    [J]. SCIENTIFIC REPORTS, 2017, 7
  • [8] RETRACTED: Formation of giant iron oxide-copper-gold deposits by superimposed, episodic hydrothermal pulses (Retracted article. See vol. 4, 2023)
    Del Real, Irene
    Reich, Martin
    Simon, Adam C.
    Deditius, Artur
    Barra, Fernando
    Rodriguez-Mustafa, Maria A.
    Thompson, John F. H.
    Roberts, Malcolm P.
    [J]. COMMUNICATIONS EARTH & ENVIRONMENT, 2021, 2 (01):
  • [9] Deng J, 2012, ACTA PETROL SIN, V28, P1349
  • [10] Deng X.Y., 1994, EXPL REP EAST WEST O, V707