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首页> 外文期刊>Interpretation >Geophysical interpretation of U, Th, and rare earth element mineralization of the Bokan Mountain peralkaline granite complex, Prince of Wales Island, southeast Alaska
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Geophysical interpretation of U, Th, and rare earth element mineralization of the Bokan Mountain peralkaline granite complex, Prince of Wales Island, southeast Alaska

机译:阿拉斯加东南威尔士亲王岛博坎山高碱性花岗岩复合物中铀,Th和稀土元素矿化的地球物理解释

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A prospectivity map for rare earth element (REE) mineralization at the Bokan Mountain peralkaline granite complex, Prince of Wales Island, southeastern Alaska, was calculated from high-resolution airborne gamma-ray data. The map displays areas with similar radioelement concentrations as those over the Dotson REE-vein-dike system, which is characterized by moderately high %K, eU, and eTh (%K, percent potassium; eU, equivalent parts per million uran?um; and eTh, equivalent parts per million thorium). Gamma-ray concentrations of rocks that share a similar range as those over the Dotson zone are inferred to locate high concentrations of REE-bearing minerals. An approximately 1300-m-long prospective tract corresponds to shallowly exposed locations of the Dotson zone. Prospective areas of REE mineralization also occur in continuous swaths along the outer edge of the pluton, over known but undeveloped REE- occurrences, and within discrete regions in the older Paleozoic country rocks. Detailed mineralogical examinations of samples from the Dotson zone provide a means to understand the possible causes of the airborne Th and U anomalies and their relation to REE minerals. Thorium is sited primarily in thorite. Uranium also occurs in thorite and in a complex suite of ±Ti ± Nb ± Y oxide minerals, which include fergusonite, polycrase, and aeschynite. These oxides, along with Y-silicates, are the chief heavy REE (HREE)-bearing minerals. Hence, the eU anomalies, in particular, may indicate other occurrences of similar HREE-enrichment. Uranium and Th chemistry along the Dotson zone showed elevated U and total REEs east of the Camp Creek fault, which suggested the potential for increased HREEs based on their association with U-oxide minerals. A uranium prospectivity map, based on signatures present over the Ross-Adams mine area, was characterized by extremely high radioelement values. Known uranium deposits were identified in the U-prospectivity map, but the largest tract occurs over a radioelement-rich granite phase within the pluton that is likely not related to mineralization. Neither mineralization type displays a well-defined airborne magnetic signature.
机译:根据高分辨率的机载伽玛射线数据,计算了阿拉斯加东南部威尔士亲王岛博坎山高碱性花岗岩复合体中稀土元素(REE)矿化的前景图。该地图显示的放射性元素浓度与Dotson REE-静脉-dike系统相似,其特征在于%K,eU和eTh适度较高(%K,钾的百分比; eU,百万分之几的铀;并推断出与Dotson区域范围相似的岩石的伽马射线浓度可以找到高浓度的REE矿物,约1300米长的预期远稀土矿化的预期地区也发生在沿岩体外缘的连续条带中,在已知但未发育的稀土矿中,以及在旧生代乡村岩石的离散区域内。 Dotson地区的提供了一种手段,以了解空中Th和U异常的可能原因及其与REE矿物的关系,Thor主要位于石中。镭也存在于石和一系列复杂的±Ti±Nb±Y氧化物矿物中,包括铁镁铝石,多裂纹和水钠铁矿。这些氧化物以及Y硅酸盐是主要的重稀土(HREE)矿物。因此,特别是eU异常可能表明发生了类似的HREE富集的其他事件。沿Dotson区的铀和Th化学表明,坎普克里克断层以东的U和总REE升高,这表明基于HREE与U氧化物矿物质的联系,可能增加HREE。基于罗斯-亚当斯矿区上存在的特征的铀远景图,其放射性元素值非常高。在铀远景图中确定了已知的铀矿床,但最大的矿床发生在岩体中富含放射性元素的花岗岩相上,这可能与矿化无关。两种矿化类型均未显示明确的机载磁性特征。

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