Alteration mineralogy and pathfinder element inventory in the footprint of the McArthur River unconformity-related uranium deposit, Canada

N. Joyce, D. Layton-Matthews, K. Kyser, M. Leybourne, K. Ansdell, T. Kotzer, D. Quirt, G. Zaluski
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引用次数: 2

Abstract

Pathfinder elements associated with the exploration footprint of the McArthur River unconformity-related U deposit include U, radiogenic Pb, V, Ni, Co, Cu, Mo, As, Zn, and rare earth elements. In this study, the mineralogical and paragenetic context for their occurrence was established by integrating in situ mineral chemistry and laser ablation mass spectrometry chemical mapping of interstitial assemblages, detrital grains, and cements with whole-rock analyses of drill core samples from the diagenetically altered background and the hydrothermally altered sandstone host rocks. Diagenetically altered background sandstones contain a matrix assemblage of illite and dickite, with trace to minor aluminum-phosphate-sulfate (APS) minerals, apatite, and Fe-Ti oxide minerals. Aluminum-phosphate-sulfate minerals account for the majority of the Sr and light rare earth element concentrations, whereas early diagenetic apatite, monazite, and apatite inclusions in detrital quartz and detrital zircon contribute significant U and heavy rare earth elements to samples analyzed with an aggressive leach (partial digestion) such as aqua regia. Hydrothermally altered sandstone host rocks also contain variable assemblages of Al-Mg chlorite (sudoite), alkali-deficient tourmaline, APS minerals, kaolinite, illite, Fe-oxide, and sulfide minerals. Late pre-mineralization chlorite accounts for a significant portion of the observed Ni concentrations, whereas Co, Cu, Mo, and Zn occur predominantly in cryptic sub-micron sulfide and sulfarsenide inclusions within clay mineral aggregates and in association with Fe-Ti oxides. Elevated concentrations of U were observed in cryptic micro-inclusions associated with sulfides in quartz overgrowths, with Fe-Ti oxide micro-inclusions in kaolinite, and in post-mineralization Fe-oxide veins. The distribution of pathfinder elements throughout the deposit footprint appears to be less related to the primary dispersion of alteration minerals from the hydrothermal system than to the secondary dispersion of elements post-mineralization. Their occurrence throughout pre-, syn-, and post-mineralization assemblages further demonstrates the limitations to defining geochemical footprints from pathfinder element concentrations expressed in lithogeochemical data sets without structural, lithological, and mineralogical context.
加拿大麦克阿瑟河不整合铀矿床足迹中的蚀变矿物学和探路者元素清单
与麦克阿瑟河不整合相关U矿床勘探足迹相关的探路者元素包括U、放射性成因Pb、V、Ni、Co、Cu、Mo、As、Zn和稀土元素。在本研究中,通过对成岩蚀变背景和热液蚀变砂岩寄主岩的岩心样品进行全岩分析,结合原位矿物化学和激光烧蚀质谱化学对间隙组合、碎屑颗粒和胶结物进行制图,建立了它们赋存的矿物学和共生环境。成岩蚀变背景砂岩含有伊利石和迪辉石的基质组合,并含有微量的硫酸铝(APS)矿物、磷灰石和铁钛氧化物矿物。铝-磷酸盐-硫酸盐矿物占Sr和轻稀土元素浓度的大部分,而碎屑石英和碎屑锆石中的早期成岩磷灰石、独居石和磷灰石包裹体则为侵蚀浸出(部分消化)(如王水)分析的样品提供了大量的U和重稀土元素。热液蚀变砂岩寄主岩还含有不同组合的Al-Mg绿泥石(sudoite)、缺碱电气石、APS矿物、高岭石、伊利石、氧化铁和硫化物矿物。晚期矿化前绿泥石占观察到的Ni浓度的很大一部分,而Co, Cu, Mo和Zn主要出现在粘土矿物聚集物中隐密的亚微米硫化物和硫化物包裹体中,并与Fe-Ti氧化物相关。在石英过度生长中与硫化物相关的隐型微包裹体中,在高岭石中观察到铁-钛氧化物微包裹体,在成矿后的铁-氧化物脉中观察到铀浓度升高。探路者元素在矿床足迹中的分布与热液系统蚀变矿物的初次分散关系不大,而与成矿后元素的二次分散关系较大。它们在成矿前、同步和成矿后组合中的存在进一步表明,在没有构造、岩性和矿物学背景的情况下,从岩石地球化学数据集中表达的探路者元素浓度来定义地球化学足迹存在局限性。
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