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Metallogenic epoch of the Jiapigou gold belt, Jilin Province, China: Constrains from rare earth element, fluid inclusion geochemistry and geochronology

机译:吉林省夹皮沟金矿带的成矿时代:稀土元素,流体包裹体地球化学和年代学的制约

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摘要

The Jiapigou gold belt is located on the northern margin of the North China Craton, and is one of the most important gold-mining and production regions in the circum-Pacific metallogenic zone. Research has been conducted in this area since the 1960s, however, the timing of the gold mineralisation is still unresolved, and an ideal metallogenic model has not been well established. To address these questions, a systematic geological, geochemical and geochronological investigation was conducted. The study revealed that (i) the gold-bearing quartz veins can be divided into two groups, earlier and later gold-bearing quartz veins according to their occurrence and the geochemical characteristics, (ii) the geochemical characteristics of the ore bodies, while similar to granite, are clearly different from the altered rock, and (iii) the geochemical characteristics of the later gold-bearing quartz veins have more similarity to the altered rock than the earlier gold-bearing quartz veins do. Therefore, we conclude that two independent stages of metallogenesis within the Jiapigou gold deposit area are related to magmatic activity in the Palaeoproterozoic and the Yanshanian stage of the Mesozoic, that the ore-forming fluids are mainly of magmatic origin, and that magma contamination by the altered rock was stronger in the Mesozoic. Zircon LA–ICP–MS U–Pb data show that the age of the Palaeoproterozoic granite is ~2426.0 Ma and that of the Mesozoic granite is ~166.2 Ma; these ages can be interpreted as the maximum ages of the two periods of gold mineralisation. In addition to investigating the geotectonic and regional structure of the Jiapigou gold belt, this study also proposes that the WNW-trending zone of gold mineralisation is a result of a magmatic event within the basement in the early Palaeoproterozoic, and that large-scale sinistral strike-slip displacements of the Huifahe and Liangjiang Faults in the late Middle Triassic (Yanshanian epoch) controlled the later tectono-magmatic event and the NNE–ENE-trending zone of gold mineralisation.
机译:甲皮沟金矿带位于华北克拉通的北缘,是环太平洋成矿带最重要的金矿开采和生产地区之一。自1960年代以来一直在这一领域进行研究,但是,金矿化的时间仍未解决,理想的成矿模式还没有很好地建立。为了解决这些问题,进行了系统的地质,地球化学和年代学调查。研究发现(i)含金石英脉可根据其发生和地球化学特征分为早期和晚期含金石英脉两组,(ii)矿体的地球化学特征与花岗岩相比,明显不同于蚀变的岩石;(iii)较早的含金石英脉的含金石英脉的地球化学特征与蚀变的岩石具有更大的相似性。因此,我们得出结论,嘉pi沟金矿床内有两个独立的成矿阶段,与古元古代和中生代燕山期的岩浆活动有关,成矿流体主要是岩浆成因,且岩浆受到了岩浆的污染。中生代蚀变岩石更强。 Zircon LA–ICP–MS U–Pb数据表明,古元古代花岗岩的年龄为〜2426.0 Ma,中生代花岗岩的年龄为〜166.2 Ma;这些年龄可以解释为金矿化两个时期的最大年龄。除了研究贾皮沟金矿带的大地构造和区域结构外,这项研究还提出,金成矿的西西北向趋势带是古元古代早期地下岩浆事件的结果,也是大规模的左旋走向的结果。中三叠世晚期(燕山期)的辉发河断裂和两江断裂的滑移控制了后来的构造岩浆事件和金矿的NNE-ENE趋势区。

著录项

  • 来源
    《Journal of Earth System Science》 |2012年第6期|1401-1420|共20页
  • 作者单位

    State Key Laboratory of Geological Processes and Mineral Resources China University of Geosciences No. 29 Xueyuan Road Beijing 100083 People’s Republic of China;

    State Key Laboratory of Geological Processes and Mineral Resources China University of Geosciences No. 29 Xueyuan Road Beijing 100083 People’s Republic of China;

    Beijing Research Institute of Uranium Geology P. O. Box 9818 Beijing 100029 People’s Republic of China;

    Shaanxi Province Institute of Geological Survey No. 66 Jixiang Road Xi’an 710065 People’s Republic of China;

    Development Research Centre China Geologic Survey No. 45 Fuwai Street Beijing 100037 People’s Republic of China;

    Beijing Research Institute of Uranium Geology P. O. Box 9818 Beijing 100029 People’s Republic of China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Metallogenic epoch; rare earth elements; fluid inclusion; zircon U–Pb dating; Jiapigou gold belt; northeast China;

    机译:成矿时代稀土元素流体包裹体锆石U-Pb测年贾皮沟金矿带东北;

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