Genesis of the Hebaoshan gold deposit in Fujian Province of Southeast China: constraints from a combined fluid inclusion, H-O-C-S-Pb-He-Ar isotope and geochronological study

被引:0
作者
Ying Ma
Shao-Yong Jiang
Hartwig E. Frimmel
Lü-Yun Zhu
Suo-Fei Xiong
Run-Sheng Chen
Xue-Xie Li
机构
[1] China University of Geosciences,State Key Laboratory of Geological Processes and Mineral Resources, School of Earth Resources, Collaborative Innovation Center for Exploration of Strategic Mineral Resources
[2] University of Würzburg,Institute of Geography and Geology
[3] University of Cape Town,Department of Geological Sciences
[4] Fuzhou University,College of Zijin Mining
[5] Fujian Institute of Geological Survey and Research,undefined
来源
Mineralium Deposita | 2022年 / 57卷
关键词
Fluid inclusions; H-O-C-S-Pb isotopes; Rb-Sr and Ar-Ar geochronology; Late Triassic; Orogenic gold deposit; Hebaoshan; Southeast China;
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摘要
The large Hebaoshan gold deposit (41.5 t Au, average grade: 3.5 g/t) is located in a hitherto poorly documented gold province in the northeastern part of the South China Block. It is hosted by Precambrian metasedimentary rocks that experienced Triassic greenschist- to amphibolite-facies metamorphism. Three hydrothermal stages can be distinguished: quartz + sericite + pyrite + pyrrhotite (stage I), quartz + magnetite + sulfide (stage II), and quartz + carbonate + pyrite + hematite (stage III). Auriferous pyrite samples yielded a Rb-Sr isochron age of 234 ± 3 Ma (2σ, MSWD = 0.24), and ore-related hydrothermal sericite yielded a 40Ar-39Ar plateau age of 226.4 ± 2.0 Ma (2σ, MSWD = 1.01), which are distinctly younger than ca. 430 Ma granitic rocks in the mining district and older than 170–130 Ma granites in the region, ruling out any genetic link between granite emplacement and gold mineralization. The mineralizing fluid system can be described as carbonic-aqueous with low to moderate salinity (2.2–10.1 wt% NaCl equiv.) and medium temperature of 290 to 350 °C (stage I) and 230 to 280 °C (stage II). The δ18O quartz ranges from 13.3 to 15.4 ‰, and the δD values for fluid inclusions in quartz range from − 97 to − 60 ‰. The calcite has C-isotopes ranging from − 6.1 to − 3.8 ‰ and O-isotopes from 2.8 to 13.6 ‰. H-O-C isotope data are consistent with a metamorphic fluid derived from devolatilization of Neoproterozoic basement rocks during regional metamorphism in the Late Triassic Indosinian period. The δ34S values of sulfides for stages I, II, and III are 0.1 to 7.8 ‰, − 10.6 to 5.1 ‰, and − 18.9 to − 14.1 ‰, respectively, indicating an increase in oxygen fugacity during fluid ascent which resulted in more negative sulfur isotope values of sulfides and precipitation of gold. Pyrite separates have 206Pb/204Pb ratios of 17.340 to 17.687, 207Pb/204Pb ratios of 15.539 to 15.604, and 208Pb/204Pb ratios of 37.749 to 38.094. The S-Pb isotope data suggest derivation of S and Pb from the Precambrian metasedimentary country rocks. Auriferous pyrite yielded elevated 3He/4He ratios (0.78–1.46 Ra), which suggest a mantle component as can be expected from fluids derived from a subduction setting. It is concluded that Hebaoshan is an orogenic gold deposit that formed during Triassic flat-slab subduction of the paleo-Pacific plate beneath the South China Block and thus constitutes the first Triassic deposit of this type recognized in the coastal area of Southeast China.
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页码:13 / 34
页数:21
相关论文
共 354 条
[1]  
Anderson MR(1992)Fluid mixing in the generation of mesothermal gold mineralization in the Transvaal Sequence, Transvaal, South Africa Eur J Mineral 4 933-948
[2]  
Rankin A(1999)Adaptation of the Bowers and Helgeson (1983) equation of state to the H Chem Geol 154 225-236
[3]  
Spiro B(2002)O-CO Rev Mineral Geochem 47 539-614
[4]  
Bakker RJ(2015)-CH Geol Fujian 4 289-297
[5]  
Ballentine CJ(1968)-N J Phys Chem 72 800-808
[6]  
Burgess R(1983)-NaCl system Am Mineral 68 1059-1075
[7]  
Marty B(1995)Tracing fluid origin, transport and interaction in the crust Geochim Cosmochim Acta 59 3943-3952
[8]  
Bao SZ(2009)Study on the ore-control geological conditions and prospecting foreground of gold ores in Fujian Province Tectonophysics 467 35-43
[9]  
Bottinga Y(2013)Calculation of fractionation factors for carbon and oxygen isotopic exchange in the system calcite-carbon dioxide-water J Asian Earth Sci 74 198-209
[10]  
Bowers TS(2010)Calculation of the thermodynamic and geochemical consequences of nonideal mixing in the system H J Asian Earth Sci 39 309-330