The giant Zaozigou Au-Sb deposit in West Qinling, China: magmatic- or metamorphic-hydrothermal origin?

被引:0
作者
Kun-Feng Qiu
Hao-Cheng Yu
Jun Deng
Duncan McIntire
Zong-Yang Gou
Jian-Zhen Geng
Zhao-Shan Chang
Rui Zhu
Kang-Ning Li
Richard Goldfarb
机构
[1] China University of Geosciences,State Key Laboratory of Geological Processes and Mineral Resources, School of Earth Sciences and Resources
[2] Department of Geology and Geological Engineering,undefined
[3] Colorado School of Mines,undefined
[4] Tianjin Center,undefined
[5] China Geological Survey,undefined
[6] Zaozigou Gold Company,undefined
[7] Zhaojin Mining Industry CO LTD,undefined
[8] Third Institute Geological and Mineral Exploration,undefined
[9] Gansu Provincial Bureau of Geology and Mineral Resources,undefined
来源
Mineralium Deposita | 2020年 / 55卷
关键词
Monazite geochronology; Sulfur isotope; Zaozigou deposit; Orogenic Au-Sb; West Qinling;
D O I
暂无
中图分类号
学科分类号
摘要
Understanding the relationship between mineral occurrences and host granitic rocks can be controversial. The Zaozigou Au-Sb deposit (118 t Au, 0.12 Mt Sb), hosted in metasedimentary rocks and dacitic to granodioritic sills and dikes, is one such example of a large gold deposit argued to have formed from either magmatic or metamorphic hydrothermal processes. Two populations of monazite are identified within a mineralized dacite located along a major shear zone. Magmatic monazite commonly occurs within magmatic biotite and quartz phenocrysts and is characterized by uniform and high Th concentrations. It has a crystallization age of 238.3 ± 2.6 Ma, consistent with the zircon U-Pb age of 238.0 ± 1.8 Ma from the same dacite. Hydrothermal monazite is associated with sulfides and sericite, and has a 207Pb-corrected 206Pb/238U age of 211.1 ± 3.0 Ma. The amount of Th in hydrothermal monazite is widely variable. The low Th content of some monazite grains reflects direct precipitation from a metamorphic hydrothermal fluid. Furthermore, the elevated Th content in other hydrothermal monazite grains is likely due to the release of Th (and U) into hydrothermal fluids by dissolution of pre-existing Th-rich minerals in the country rock during ore-related alteration events. The magmatism, which overlaps Middle-Late Triassic terrane subduction-accretion in the West Qinling orogen, thus pre-dates the ore-forming event by about 30 m.y. The δ34S values of pyrite, arsenopyrite, stibnite, marcasite, and chalcopyrite from disseminated- and vein-type ores range from − 12.0 to − 5.5‰. Such negative values are distinct from those measured for other deposits in the northwestern part of the orogen that are genetically related to Triassic magmatism, including the Xiekeng-Jiangligou-Shuangpengxi Cu-Au-Fe-Mo skarn, Laodou reduced intrusion-related Au, and Gangcha epithermal Au ores. The Zaozigou deposit is best classified as an epizonal orogenic Au-Sb deposit. Our results demonstrate the usefulness of high-precision in situ geochronology on monazite for deciphering age relationships in ore deposits that have spatial associations with granitic rocks, thus aiding in the testing of the veracity of ore formation models.
引用
收藏
页码:345 / 362
页数:17
相关论文
共 446 条
  • [1] Aleinikoff JN(2006)Deciphering igneous and metamorphic events in high-grade rocks of the Wilmington complex, Delaware: morphology, cathodoluminescence and backscattered electron zoning, and SHRIMP U-Pb geochronology of zircon and monazite Geol Soc Am Bull 118 39-64
  • [2] Schenck WS(2012)Gold deposits in the Sanandaj-Sirjan zone: orogenic gold deposits or intrusion-related gold systems? Resour Geol 62 296-315
  • [3] Plank MO(2006)U-Pb dating of zircon by LA-ICP-MS: geochemistry Geophysics, Geosystems 7 Q05009-974
  • [4] Srogi L(2008)Sulfur isotopes in sediment-hosted orogenic gold deposits: evidence for an early timing and a seawater sulfur source Geology 36 971-104
  • [5] Fanning CM(2018)Fluid inclusions and S-Pb isotope in Zaozigou gold deposit, Hezuo in Gansu Province J Jilin Univ (Earth Sci Ed) 48 87-23
  • [6] Kamo SL(2012)Relationship between neutral rock vein and mineralization in Zaozigou gold deposit, Gansu Gold 33 19-1048
  • [7] Bosbyshell H(2000)Round Hill shear zone-hosted gold deposit, Macraes Flat, Otago, New Zealand: evidence of a magmatic ore fluid Econ Geol 95 1025-299
  • [8] Aliyari F(2014)Cenozoic tectono-magmatic and metallogenic processes in the Sanjiang region, southwestern China Earth-Sci Revi 138 268-1006
  • [9] Rastad E(2015)Cretaceous–Cenozoic tectonic history of the Jiaojia Fault and gold mineralization in the Jiaodong Peninsula, China: constraints from zircon U–Pb, illite K–Ar, and apatite fission track thermochronometry Mineral Deposita 50 987-274
  • [10] Mohajjel M(2016)Gold mineralization in China: metallogenic provinces, deposit types and tectonic framework Gondwana Res 36 219-184