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Uranium-rich diagenetic fluids provide the key to unconformity-related uranium mineralization in the Athabasca Basin

机译:富铀成岩流体为阿萨巴斯卡盆地不整合相关铀矿化提供了关键

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摘要

The Proterozoic Athabasca Basin is well known for its unusually large-tonnage and high-grade ‘unconformity-related’ uranium (U) deposits, however, explanations for the basin-wide U endowment have not been clearly identified. Previous studies indicate that U-rich brines with up to ~600 ppm U and variable Na/Ca ratios (from Na-dominated to Ca-dominated) were present at the sites of U mineralization, but it is unknown whether such fluids were developed solely in the vicinity of the U deposits or at a basinal scale. Our microthermometric and LA-ICP-MS analyses of fluid inclusions in quartz overgrowths from the barren part of the basin indicate that U-rich brines (0.6 to 26.8 ppm U), including Na-dominated and Ca-dominated varieties, were widely developed in the basin. These U concentrations, although not as high as the highest found in the U deposits, are more than two orders of magnitude higher than most naturally occurring geologic fluids. The basin-scale development of U-rich diagenetic fluids is interpreted to be related to several geologic factors, including availability of basinal brines and U-rich lithologies, and a hydrogeologic framework that facilitated fluid circulation and U leaching. The combination of these favorable conditions is responsible for the U fertility of the Athabasca Basin.
机译:元古代的阿萨巴斯卡盆地以其异常大的吨位和高品位的“不整合性相关”铀(U)矿床而闻名,但是,对整个盆地铀资源的解释尚不清楚。先前的研究表明,U矿化位点处存在U含量高达〜600 ppm和可变的Na / Ca比值(从Na为主到Ca为主)的富U盐水,但尚不知道这种流体是否仅是开发的。在铀矿床附近或盆地规模。我们对盆地贫瘠部分石英过度生长中的流体夹杂物进行了微量热分析和LA-ICP-MS分析,结果表明,包括Na为主和Ca为主的铀在内的富含U的盐水(0.6至26.8 ppm U)已广泛开发。盆地。这些铀的浓度虽然不及铀矿床中发现的最高浓度,但比大多数天然地质流体要高出两个数量级。富铀成岩流体的盆地规模发展被认为与几个地质因素有关,包括盆地盐水的可用性和富铀岩性,以及有利于流体循环和铀浸出的水文地质框架。这些有利条件的结合导致了阿萨巴斯卡盆地的U肥力。

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