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Regional Setting, Geology, and Paragenesis of the Centennial Unconformity-Related Uranium Deposit, Athabasca Basin, Saskatchewan, Canada

机译:加拿大萨斯喀彻温省阿萨巴斯卡盆地百年不整合面相关铀矿床的区域背景,地质和共生

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摘要

The Centennial unconformity-related uranium deposit represents the first significant uranium mineralization along the Snowbird tectonic zone in the south-central part of the Athabasca Basin. The deposit is associated with a steeply WNW-dipping contact between the Virgin Schist Group and mylonitic granite of uncertain age. Virgin Schist Group rocks in the deposit area include phyllites, impure quartzite, and quartzite. Medium- to coarse-grained microcline "augen" porphyroclasts characterize the granite. The quartzite, being resistant to weathering, forms a paleotopographic high flanked by a paleotalus which formed prior to Athabasca Group sedimentation. Diabase, petrographically and geochemically similar to the 1.27 Ga Mackenzie dikes, intrudes the mineralized trend along brittle structures in the basement rocks and Athabasca Group. A detailed parage-netic study of the deposit area reveals a protracted history that is related to the episodic reactivation of brittle structures and associated fluid movement along this significant structural corridor. Retrograde metamorphism converted biotite to chamosite at temperatures between 335° to 350℃ . Weathering caused the breakdown of microcline and the dissolution of quartz prior to erosion and deposition of the Athabasca Group, which started at about 1750 Ma. Compaction and diagenesis resulted in quartz overgrowths and development of a diagenetic clay assemblage of illite and sudoite at temperatures between 150° and 200℃ , which was broadly synchronous with primary mineralization. Clinochlore, euhedral quartz, carbonate, and pyrite was developed after the intrusion of the diabase under reducing conditions, primarily at temperatures between 270° to 320℃ . Uranium remobilization and alteration of uraninite to coffinite appears to have taken place after the emplacement of the diabase dikes. Kaolinite and uranophane form last in the paragenetic sequence and probably form at relatively low temperatures.
机译:与百年不整合有关的铀矿床是阿萨巴斯卡盆地中南部雪鸟构造带中第一个重要的铀矿化。该矿床与维京史斯特岩群和年龄不确定的mylonitic花岗岩之间陡峭的WNW浸润联系在一起。矿床地区的维珍席斯特组岩石包括千枚岩,不纯石英岩和石英岩。中粒至粗粒微晶“奥金”卟啉岩是花岗岩的特征。耐风化的石英岩形成古地形高处,其两侧为在阿萨巴斯卡群沉积之前形成的古陆相。辉绿岩的岩石学和地球化学特征类似于1.27 Ga Mackenzie堤防,沿基底岩石和Athabasca群的脆性结构侵入了矿化趋势。对沉积物区域进行的详细的比对论研究显示了一段漫长的历史,该历史与脆性结构的周期性重新活化以及沿该重要结构走廊的相关流体运动有关。在335°至350℃的温度范围内,逆行变质作用将黑云母转变为辉钼矿。在阿萨巴斯卡群的侵蚀和沉积之前,风化作用导致微线破裂和石英溶解,该侵蚀开始于大约1750 Ma。压实和成岩作用导致了石英的过度生长,并在150℃至200℃之间形成了伊利石和苏打石的成岩粘土组合,这与初级成矿作用大致同步。辉绿岩侵入后,在还原条件下,主要是在270°至320℃之间的温度下,产生了斜绿石,共面石英,碳酸盐和黄铁矿。辉绿岩堤防发生后,似乎发生了铀的迁移和铀矿的变化。高岭石和铀酰phane以共生顺序最后形成,并且可能在相对较低的温度下形成。

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