Geochronology, petrogenesis, and mineralization potential of the syenogranites in the Yama fluorite deposit, Tataleng granitic batholith, Qilian Orogen, NW China

IF 1.3 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Canadian Journal of Earth Sciences Pub Date : 2023-07-10 DOI:10.1139/cjes-2023-0044
He Jiao, Haifeng Lu, Guo-Biao Huang, Qiang-Qiang Cui, Q. Ding, Xuan Zhou, Ruiing Wu
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Abstract

The Yama fluorite deposit in the Qilian Orogen in NW China is characterized by predominant granitic magmatism and fluorite mineralization. The wall rocks hosting the fluorite–quartz veins in the Yama area consist of the Yama porphyritic syenogranite and the Wulandawu syenogranite. In this study, the major and trace element compositions, zircon U–Pb ages, and zircon Hf isotopes and trace element compositions were investigated. Two samples for the Yama porphyritic syenogranite yielded weighted mean 206Pb/238U zircon ages of 440.7±4.8 Ma and 447.9±6.0 Ma, and one sample for the Wulandawu syenogranite yielded a weighted mean 206Pb/238U zircon age of 441.2±5.0 Ma, all of which indicate a Late Ordovician to Early Silurian crystallization age. Geochemically, both syenogranites are peraluminous, with high alkali contents, low Zr+Nb+Ce+Y contents, relatively low (K2O+Na2O)/CaO ratios, and high Rb/Sr and Rb/Ba ratios, suggesting that they are fractionated S-type granites. They have zircon εHf(t) values of –14.9 to –4.4 and −12.2 to −4.5, respectively, suggesting that they were derived from the partial melting of pelitic-rich sources within the relatively shallow Paleoproterozoic reworked crust. The detailed geochronological and geochemical data suggest that the studied syenogranites were emplaced in a post-collisional setting related to the closure of the South Qilian Ocean. Finally, they have relatively low quantitative oxygen fugacity (fO2) values, indicating relatively reduced redox states, but their very low zircon Ce4+/Ce3+ ratios, low whole-rock K/Rb ratios, relatively high Nb/Ta ratios, and low Zr/Hf ratios suggest that they are not likely to form important W-Sn deposits and related fluorite deposits.
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祁连造山带他塔棱花岗岩基阎罗萤石矿床正长花岗岩年代学、成因及成矿潜力
祁连造山带阎罗麻萤石矿床以花岗质岩浆作用和萤石成矿作用为主。赋存萤石-石英脉的围岩主要为阎罗斑质同长花岗岩和乌兰达乌同长花岗岩。研究了其主微量元素组成、锆石U-Pb年龄、锆石Hf同位素及微量元素组成。2个亚马斑岩同长花岗岩的206Pb/238U加权平均锆石年龄分别为440.7±4.8 Ma和447.9±6.0 Ma, 1个乌兰达乌同长花岗岩的206Pb/238U加权平均锆石年龄为441.2±5.0 Ma,均反映了晚奥陶世至早志留世的结晶年龄。地球化学特征表明,两种正长花岗岩均为过铝质花岗岩,碱含量高,Zr+Nb+Ce+Y含量低,(K2O+Na2O)/CaO比值较低,Rb/Sr和Rb/Ba比值较高,为分馏s型花岗岩。它们的锆石εHf(t)值分别为-14.9 ~ -4.4和- 12.2 ~ - 4.5,表明它们来源于相对较浅的古元古代改造地壳内富泥质源的部分熔融作用。详细的年代学和地球化学资料表明,所研究的正长花岗岩位于与南祁连海闭合有关的碰撞后环境中。最后,它们的定量氧逸度(fO2)值相对较低,表明氧化还原状态相对较低,但它们的锆石Ce4+/Ce3+比值非常低,全岩K/Rb比值较低,Nb/Ta比值较高,Zr/Hf比值较低,表明它们不太可能形成重要的W-Sn矿床和相关的萤石矿床。
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来源期刊
Canadian Journal of Earth Sciences
Canadian Journal of Earth Sciences 地学-地球科学综合
CiteScore
2.80
自引率
7.10%
发文量
66
审稿时长
6-12 weeks
期刊介绍: The Canadian Journal of Earth Sciences reports current research in climate and environmental geoscience; geoarchaeology and forensic geoscience; geochronology and geochemistry; geophysics; GIS and geomatics; hydrology; mineralogy and petrology; mining and engineering geology; ore deposits and economic geology; paleontology, petroleum geology and basin analysis; physical geography and Quaternary geoscience; planetary geoscience; sedimentology and stratigraphy; soil sciences; and structural geology and tectonics. It also publishes special issues that focus on information and studies about a particular segment of earth sciences.
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