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TECTONIC SETTING AND METALLOGENETIC MECHANISM OF SANDSTONE TYPE URANIUM DEPOSITS OF INTERLAYERED OXIDATION ZONE IN THE YILI BASIN

机译:伊犁盆地中间层氧化区砂岩型铀矿床构造环境及成矿机理

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摘要

The research results have indicated that the uranium metallogeny setting and environment in the study area are different from those in the east part of China. The east part of China is located in a continental margin mobile belt of the Pacific tectonic domain, as an "extensional geotectonic setting. While the study area is situated in a special tectonic setting which is called continental margin mobile belt of the Tethys tectonic domain and uranium mineralization is closely correlated with regional compressive tectonic environment. The Compression Red-basin System is greatly different from the Taphrogeny Red-basin System in regional setting, basin feature and mineralization characteristics. Making a comparison between Taphrogeny Red-basin System and the Compression Red-basin System is meaningful for looking for different type uranium deposits in different geotectonic setting. Practice has indicated that research on the relationship between sandstone type uranium deposits occurred in the interstratified oxidation zone and regional geological setting. The study of its metallogenic mechanism can provide regional criteria for guiding the same type uranium deposit reconnaissance in the west part of China.
机译:研究结果表明,研究区域中的铀矿化环境和环境与中国东部的铀生成环境和环境不同。中国东部位于太平洋构造领域的大陆边缘移动皮带,作为“延伸地理位置环境”。虽然研究区位于特殊构造环境中,被称为Thethys构造领域的大陆边缘移动带和铀矿化与区域压缩构造环境密切相关。压缩红色盆地系统与区域设定,盆地特征和矿化特性的拟生红盆地系统大大差异。进行了发育红盆系统与压缩红色之间的比较-Basin系统对于在不同地理位置环境中寻找不同类型的铀矿石。实践表明,砂岩型铀矿床关系的研究发生在截然化的氧化区和区域地质环境中。其成矿机制的研究可以提供区域引导相同的标准PE铀矿床侦察在中国西部。

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