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Lead isotope constraints on the genetic relationships among different ore types in the Dongshengmiao deposit, northern China

机译:北方东胜梅矿床不同矿石类型遗传关系的主要同位素限制

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摘要

The giant Dongshengmiao Cu-Zn-Pb-S deposit is the most representative Proterozoic sedimentary exhalative (SEDEX) deposit in China. A detailed investigation of Pb isotope compositions of sulfides from various types of ores and associated host rocks has been carried out to determine the genetic relationships among different ore types and to provide important insights on whether younger fluids have contributed mineralizing materials in the formation of the Dongshengmiao Cu-Zn-Pb ores. The substantial similarity of the Pb isotope composition between the studied stratiform Cu-Zn-Pb and S orebodies suggests that the bulk of the Dongshengmiao Cu-Zn-Pb ores belong to the same polymetallic metallogenic system with the syngenetic S ores of the Proterozoic age. Comparatively, vein-type ores show relative scattered Pb isotope signatures that fall along a well-correlated linear trend, whereas their less radiogenic end member projects towards the Pb isotope compositions of the overlying stratiform main orebody. In addition, the overall Pb isotope compositions of these vein-type ores have shown an apparent overlap and similar trend with the radiogenic disseminated pyrites in the mica schists, indicating their radiogenic Pb most likely originated from host rocks as well. The scatter of Pb isotope compositions of the Dongshengmiao Cu-Zn-Pb ores shows that lead was not homogenized regionally during subsequent metamorphism, ruling out the possibility of a deposit-scale remobilization. Furthermore, the significant difference and lack of intermediate Pb isotope values between the previously studied Hercynian feldspars and the bulk of the Dongshengmiao sulfide ores suggest that a significant introduction of metals from, or overprinting by, fluids derived from Hercynian magmatism is unlikely to have played an important role in the metal endowment. Taken together, all sulfide orebodies associated with various ore types in the Dongshengmiao deposit belong to an integrated and progressive hy
机译:巨头东盛富铜锌PB-S押金是中国最具代表性的正面沉积呼气(Sedex)矿床。已经进行了来自各种类型的矿石和相关宿主岩石的Pb同位素组合物的详细研究,以确定不同矿石类型的遗传关系,并为年轻流体是否有贡献矿化材料在形成Dongshengmiao的形成中提供重要见解Cu-Zn-PB矿石。 Pb同位素组成的基本相似性在研究的层状Cu-Zn-PB和S矿石之间的大部分暗量的Dongshengmiao Cu-Zn-Pb矿石属于同一多种多合金化学体系,该系统具有正古代时代的组成。相对轻地,静脉型矿石呈沿着良好相关的线性趋势下降的相对散射的Pb同位素特征,而它们较低的辐射末端成员朝向覆盖层状主矿体的Pb同位素组成。此外,这些静脉型矿石的总体Pb同位素组合物已经表现出表观重叠和类似趋势,与云母分裂中的辐射性散发硫化物也表明它们的放射性Pb最可能起源于主体岩石。 Dongshengmiao Cu-Zn-PB矿石Pb同位素组合物的散射表明,在随后的变质期间没有区间均质化,统治沉积尺度重新化的可能性。此外,先前研究的海赤素氏血糖和大量的硫代硫化物矿石之间的显着差异和中间PB同位素值表明,来自缅甸岩浆广告的液体来自或互相印刷的金属的显着引入,不太可能发挥在金属禀赋中的重要作用。一起服用,与东胜梅矿床中各种矿石类型相关的所有硫化物矿体属于综合和逐步的HY

著录项

  • 来源
    《Precambrian Research》 |2018年第2018期|共11页
  • 作者单位

    Chinese Acad Geol Sci Inst Geol MNR Key Lab Isotope Geol MNR Key Lab Deep Earth Dynam Beijing 100037 Peoples R China;

    Chinese Acad Geol Sci Inst Geol MNR Key Lab Isotope Geol MNR Key Lab Deep Earth Dynam Beijing 100037 Peoples R China;

    Chinese Acad Geol Sci Inst Geol MNR Key Lab Isotope Geol MNR Key Lab Deep Earth Dynam Beijing 100037 Peoples R China;

    Chinese Acad Geol Sci Inst Geol MNR Key Lab Isotope Geol MNR Key Lab Deep Earth Dynam Beijing 100037 Peoples R China;

    Chinese Acad Geol Sci Inst Geol MNR Key Lab Isotope Geol MNR Key Lab Deep Earth Dynam Beijing 100037 Peoples R China;

    Chinese Acad Geol Sci Inst Geol MNR Key Lab Isotope Geol MNR Key Lab Deep Earth Dynam Beijing 100037 Peoples R China;

    Chinese Acad Geol Sci Inst Geol MNR Key Lab Isotope Geol MNR Key Lab Deep Earth Dynam Beijing 100037 Peoples R China;

    China Univ Geosci Sch Earth Sci &

    Resources Beijing 100083 Peoples R China;

    Chinese Acad Geol Sci Inst Geol MNR Key Lab Isotope Geol MNR Key Lab Deep Earth Dynam Beijing 100037 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 前寒武纪;
  • 关键词

    Pb isotopes; Genetic relationship; Sulfide vein; Stratiform orebody; SEDEX-type deposit;

    机译:Pb同位素;遗传关系;硫化物静脉;层状矿体;Sedex型矿床;

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