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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >Geology, geochronology and geochemistry of the Saishitang Cu deposit, East Kunlun Mountains, NW China: Constraints on ore genesis and tectonic setting
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Geology, geochronology and geochemistry of the Saishitang Cu deposit, East Kunlun Mountains, NW China: Constraints on ore genesis and tectonic setting

机译:中国西北昆仑山赛什塘铜矿床的地质,年代学和地球化学:矿床成因和构造环境的制约

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摘要

The Saishitang Cu deposit, located on the eastern area of the Eastern Kunlun Orogenic Belt (EKOB), and on the northern margin of the Tibetan Plateau, is one of the most important copper deposits in Qinghai Province, China. Skarn and Cu orebodies mainly occur as stratoids or lenses along the contact zone between the quartz di-orite and Lower to Middle Triassic metamorphosed tuff and marble. In this study, we use new zircon U-Pb ages, molybdenite Re-Os ages, granitoid geochemical compositions, and zircon Hf isotope data to constrain the ore genesis and the tectonic setting of the Saishitang Cu deposit. The quartz diorite is composed of inner medium-to fine-grained quartz diorite phase and an outer porphyritic quartz diorite phase. U-Pb dating of zircons by laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) yield ages of 222.7 +/- 23 Ma and 222.6 +/- 2.4 Ma for the inner and outer phase of quartz diorite, respectively. Molybdenite separated from ore-bearing quartz veins yields a Re-Os isochron age of 223.4 +/- 1.5 Ma, indicating a close temporal link between magmatism and mineralization. Geochemically, the quartz diorite shows high contents of SiO2 (59.63-68.21 wt.%), Al2O3 (15.57-18.13 wt.%) and Na2O (3.07-3.56 wt.%), with A/CNK values between 0.90 and 1.01 and Mg# between 46 and 52, classified as the calc-alkaline I-type granite. The trace element patterns are characterized by high LREE (LREE/HREE = 7.36-13.03), weak negative Eu anomalies (delta Eu = 0.69-0.86), relative enrichment of Rb, Th, K, and Pb, and depletion of Nb, Ta, P, and Ti. The quartz diorite has variable epsilon(Hf)(t) values (-2.5 to 4.87) and Mesoproterozoic two-stage model ages (997 to 1387 Ma). Based on petrological and geochemical features, we infer that the quartz diorite is derived from the partial melting of thickened lower crust with an additional input of mantle components. According to the geological, geochemical, and mineralogical features, we propose that the Saishitang Cu deposit is a skarn deposit with minor porphyry-type mineralization and the porphyry-skarn mineral system is related to the crust-mantle interaction. Based on the tectonic evolution of the Paleo-Tethys Ocean during the Late Triassic, we infer that the intrusions and associated Cu mineralization were related to regional extension of the EKOB in a post-collision environment. The results also show that most porphyry-skam Cu deposits in the EKOB have similar mineralization ages (240-220 Ma) and the Late Triassic granitoids in the EKOB present significant potential for the prospecting of porphyry-skarn Cu deposits. (C) 2015 Elsevier B.V. All rights reserved.
机译:赛世唐铜矿床位于东昆仑造山带(EKOB)东部,在青藏高原的北缘,是中国青海省最重要的铜矿床之一。矽卡岩和铜矿体主要以层状石或晶状体的形式出现在石英硅藻土与下至中三叠纪变质凝灰岩和大理石之间的接触带。在这项研究中,我们使用新的锆石U-Pb年龄,辉钼矿Re-Os年龄,花岗岩类地球化学成分和锆石Hf同位素数据来约束赛世塘铜矿床的成因和构造环境。石英闪长岩由内部中等粒度至细粒度的石英闪长岩相和外部的斑状石英闪长岩相组成。通过激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)对锆石进行U-Pb定年,石英闪长岩的内相和外相的年龄分别为222.7 +/- 23 Ma和222.6 +/- 2.4 Ma 。从含矿石英脉中分离出辉钼矿的Re-Os等时年龄为223.4 +/- 1.5 Ma,表明岩浆作用与矿化之间存在着紧密的时间联系。从地球化学角度看,石英闪长岩显示出高含量的SiO2(59.63-68.21 wt。%),Al2O3(15.57-18.13 wt。%)和Na2O(3.07-3.56 wt。%),A / CNK值在0.90至1.01和Mg之间#在46到52之间,属于钙碱性I型花岗岩。痕量元素模式的特征是高LREE(LREE / HREE = 7.36-13.03),弱的Eu负负异常(δEu = 0.69-0.86),Rb,Th,K和Pb的相对富集以及Nb,Ta的耗尽,P和Ti。石英闪长岩具有可变的ε(Hf)(t)值(-2.5至4.87)和中元古代两阶段模型年龄(997至1387 Ma)。根据岩石学和地球化学特征,我们推断石英闪长岩是由增厚的下部地壳与额外的地幔组分输入而部分熔融而成的。根据地质,地球化学和矿物学特征,我们认为赛石塘铜矿床是矽卡岩型矿床,斑岩型矿化程度较小,而斑岩-矽卡岩型矿床与地幔-幔幔相互作用有关。根据三叠纪晚期古特提斯海洋的构造演化,我们推断入侵和相关的铜矿化与后碰撞环境中EKOB的区域扩展有关。结果还表明,EKOB中的大多数斑岩型矽卡岩铜矿床具有相似的矿化年龄(240-220 Ma),而EKOB中的晚三叠世花岗岩体具有斑岩型矽卡岩型铜矿床的巨大勘探潜力。 (C)2015 Elsevier B.V.保留所有权利。

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