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首页> 外文期刊>Natural Resources Research >Petrochemical and Mineralogical Constraints on the Source and Processes of Uranium Mineralisation in the Granitoids of Zing-Monkin Area, Adamawa Massif, NE Nigeria
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Petrochemical and Mineralogical Constraints on the Source and Processes of Uranium Mineralisation in the Granitoids of Zing-Monkin Area, Adamawa Massif, NE Nigeria

机译:尼日利亚东北部阿达玛瓦地块Zing-Monkin地区花岗岩类铀矿成矿来源和过程的石油化学和矿物学约束

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摘要

Zing-Monkin area, located in the northern part of Adamawa Massif, is underlain by extensive exposures of moderately radioactive granodiorites, anatectic migmatites, equigranular granites, porphyritic granites and highly radioactive fine-grained granites with minor pegmatites. Selected major and trace element petrochemical investigations of the rocks show that a progression from granodiorite through migmatite to granites is characterised by depletion of MgO, CaO, Fe2O3, Sr, Ba, and Zr, and enrichment of SiO2 and Rb. This trend is associated with uranium enrichment and shows a chemical gradation from the more primitive granodiorite to the more evolved granites. Electron microprobe analysis shows that the uranium is content in uranothorite and in accessories, such as monazite, titanite, apatite, epidote and zircon. Based on petrochemical and mineralogical data, the more differentiated granitoids (e.g., fine-grained granite) bordering the Benue Trough are the immediate source of the uranium prospect in Bima Sandstone within the Trough. Uranium was derived from the granitoids by weathering and erosion. Transportation and subsequent interaction with organic matter within the Bima Sandstone led to precipitation of insoluble secondary uranium minerals in the Benue Trough.
机译:位于阿达玛瓦断层山脉北部的Zing-Monkin地区被大量放射性中等的花岗闪长岩,无水的辉锰矿,等粒花岗岩,斑状花岗岩和高放射性细粒花岗岩和次伟晶岩所覆盖。岩石的主要和微量元素石化研究表明,从花岗闪长岩到硅镁铁矿到花岗岩的演化过程以MgO,CaO,Fe2 O3, Sr,Ba和Zr的耗竭和富集为特征。 SiO2 和Rb。这种趋势与铀浓缩有关,并且显示出从较原始的花岗闪长岩到较演化的花岗岩的化学级配。电子探针分析表明,铀中的尿素含量和独居石,钛铁矿,钛铁矿,磷灰石,山竹和锆石中都含有铀。根据石化和矿物学数据,与贝努海槽接壤的差异较大的花岗岩(例如细粒花岗岩)是该槽内比马砂岩铀矿前景的直接来源。铀是通过风化和侵蚀从花岗岩中衍生出来的。在Bima砂岩中的运输以及随后与有机物的相互作用导致Benue槽中沉淀出不溶的次生铀矿物。

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