首页> 外文学位 >Geochemical and mineralogical evolution of the McArthur River Zone 4 unconformity-related uranium ore body and application of iron oxidation state in clay alteration as indicator of uranium mineralization.
【24h】

Geochemical and mineralogical evolution of the McArthur River Zone 4 unconformity-related uranium ore body and application of iron oxidation state in clay alteration as indicator of uranium mineralization.

机译:麦克阿瑟河4区不整合相关铀矿体的地球化学和矿物学演化以及铁氧化态在黏土蚀变中的应用作为铀矿化的指标。

获取原文
获取原文并翻译 | 示例

摘要

The sandstone-hosted McArthur River Zone 4 U ore body and alteration system, located in the Athabasca Basin, are the focus of a detailed mineralogical and geochemical study aimed at reconstructing its evolution. The oxidation state of Fe in clay alteration from Zone 4 is measured using 57Fe Mossbauer spectroscopy and compared with other mineralized and barren sandstone-hosted alteration systems in the Athabasca Basin. The aim is to ascertain the role of Fe in forming U deposits and determine whether Fe oxidation state in alteration minerals can indicate proximity to mineralization.;At Zone 4, early diagenetic kaolin is overprinted by zones of dravite, illite, chlorite, and late kaolinite forming around the P2 fault. Uranium mineralization occurred at ca. 1600 Ma and was triggered by mixing between oxidizing U-bearing basinal fluids and reducing basement-modified basinal fluids, the latter forming when basinal fluids interacted with basement lithologies. Early pre-ore silicification in the lower 200 metres of the Manitou Falls Formation above the ore body created favourable conditions for mineralization by focusing basinal fluids into the reduction site and enhancing ore preservation. However, it obstructed the post-ore migration of radiogenic Pb and U pathfinder elements from the deposit and limited the extent of hydrothermal sudoite alteration in the overlying strata.;Sandstone-hosted alteration systems in the Athabasca Basin are commonly surrounded by an outer illite and an inner chlorite zone. Illites have high Fe3+/SigmaFe ratios characteristic of formation from oxidizing basinal fluids, whereas, chlorites have lower and more varied Fe3+ /SigmaFe ratios, reflecting their origin from reducing, Fe 2+-bearing basement-derived fluids having undergone variable mixing with oxidizing basinal fluids. Chlorites in mineralized systems where fluid-mixing occurred, such as at McArthur River Zone 4 and Maurice Bay, record higher Fe3+/SigmaFe ratios than barren systems where fluid-mixing did not, such as at Wheeler River Zone K and Spring Point. The scarcity of U-bearing basinal fluids available for mixing with Fe2+-bearing basement fluids is a critical geochemical factor precluding mineralization in barren sandstone-hosted systems. The Fe3+/SigmaFe ratio of chlorites has potential applications for discriminating barren and mineralized systems and as spatial vectors to ore when coupled with Pb isotope ratios.
机译:位于阿萨巴斯卡盆地的砂岩气藏的麦克阿瑟河4区铀矿体和蚀变系统是旨在重建其演化的详细矿物学和地球化学研究的重点。使用57Fe Mossbauer光谱仪测量了来自4区的粘土蚀变中的Fe的氧化态,并将其与阿萨巴斯卡盆地的其他矿化和贫瘠的砂岩岩溶蚀变系统进行了比较。目的是确定铁在形成铀矿中的作用,并确定蚀变矿物中的铁氧化态是否可以表明接近矿化。在第4区,早成岩高岭土被德拉维特,伊利石,绿泥石和晚高岭石覆盖。在P2故障周围形成。铀矿化发生在约。 1600 Ma,是由氧化含U的盆地流体与还原的基底改性的盆地流体之间的混合引发的,后者是在盆地流体与基底岩性相互作用时形成的。在矿体上方的Manitou瀑布组的下200米处,矿石前期的早期硅化作用通过将盆地流体集中到还原点并增强了矿石的保存,为矿化创造了有利条件。但是,它阻碍了矿床中放射性Pb和U探路元素的矿石后运移,并限制了上覆地层中热液苏铁矿蚀变的范围。;阿萨巴斯卡盆地的砂岩岩溶蚀变系统通常被外部伊利石包围内部的亚氯酸盐区。伊利石具有较高的Fe3 + / SigmaFe比值,这些特性是由氧化盆地流体形成的,而绿泥石具有更低和更多变化的Fe3 + / SigmaFe比值,反映出它们的起源是通过还原,含Fe 2+的地下衍生流体与氧化盆地进行了混合混合。液体。发生流体混合的矿化系统(例如,麦克阿瑟河4区和莫里斯湾)中的亚氯酸盐比没有流体混合的贫瘠系统(例如,惠勒河K区和斯普林波因特)记录的Fe3 + / SigmaFe比更高。可用于与含Fe2 +的地下流体混合的含U底盆地液的稀缺是一个重要的地球化学因素,排除了在贫瘠的砂岩宿主系统中的矿化作用。亚氯酸盐的Fe3 + / SigmaFe比值可用于区分贫瘠和矿化系统,并与Pb同位素比值结合用作矿石的空间向量。

著录项

  • 作者

    Ng, Ronald.;

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Geochemistry.;Mineralogy.
  • 学位 M.Sc.
  • 年度 2013
  • 页码 221 p.
  • 总页数 221
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:10

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号