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首页> 外文期刊>Chinese Journal of Geochemistry >Geochemical characteristics and spectrometric prospecting in the muscovite-bearing pegmatites and granites, southeastern Aswan, Egypt
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Geochemical characteristics and spectrometric prospecting in the muscovite-bearing pegmatites and granites, southeastern Aswan, Egypt

机译:埃及阿斯旺东南部含白云母伟晶岩和花岗岩的地球化学特征和光谱勘探

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摘要

Rare metal mineralization of Sn, Nb-Ta and W is encountered in the Gebel Dihmit area (GDA), southeastern Aswan, Egypt. The mineralization is related to muscovite granites and their pegmatite derivatives. The peg-matites are divided into three types according to their main mineral assemblages: K-feldspar-muscovite-tourmaline, K-feldspar-albite-muscovite and albite-K-feldspar-lepidolite veins. Petrogenetic studies indicate that Sn and Nb-Ta mineralization extends from the late-magmatic stage to the pegmatite and hydrothermal stages of the (GDA) suite. The albite-K-feldspar-lepidolite granite is composed dominantly of albite, lepidolote, and quartz, with topaz, K-feldspar and amblygonite. The accessory minerals are zircon, monazite, pollucite, columbite-tantalite, microlite and Ta-rich cassiterite. Phenocrysts of quartz, topaz and K-feldspar contain abundant inclusions of albite laths and occasional lepidolite crystals along growth zones (snowball texture), indicating simultaneous crystallization from a subsolvus, residual magma. The origin of the pegmatites is attributed to extreme differentiation by fractional crystallization of a granitic magma. The economic potential for rare metals was evaluated in the geochemical discrimination diagrams. Accordingly, some of the pegmatites are not only highly differentiated in terms of alkalis, but also the promising targets for small-scale Ta and, to a less extent, Sn. The pegmatites also provide the first example of Fe-Mn and Nb-Ta fractionation in successive generations of granites to cassiterite-bearing pegmatites, which perfectly exhibit similar fractionation trends established for primary columbite-tantalite in the corresponding categories of pegmatites. Uranium and Th of magmatic origin are indicated by the presence of thorite and allanite, whereas evidence of hydrothermal mineralization is the alteration of rock-foring minerals such as feldspar and the formation of secondary minerals such as uranophane..
机译:在埃及阿斯旺东南部的Gebel Dihmit地区(GDA)遇到了Sn,Nb-Ta和W的稀有金属矿化。矿化与白云母花岗岩及其伟晶岩衍生物有关。根据主要矿物组合,钉-陨石分为三种类型:钾长石-白云母-电气石,钾长石-白云母-白云母和钠长石-钾长石-锂云母脉。岩石成因研究表明,Sn和Nb-Ta矿化从岩浆晚期到(GDA)组的伟晶岩和热液阶段。钠长石-钾长石-锂云母花岗岩主要由钠长石,鳞翅目和石英组成,还有黄玉,钾长石和闪辉石。辅助矿物为锆石,独居石,钙铝石,lum石-钽铁矿,微晶石和富含钽的锡石。石英,黄玉和钾长石的透晶石在生长区(雪球纹理)内含有丰富的钠长石板条和偶尔的锂云母晶体包裹体,表明同时从亚溶质残留岩浆中结晶。伟晶岩的成因归因于花岗岩岩浆的分步结晶的极端分化。在地球化学判别图中评估了稀有金属的经济潜力。因此,某些伟晶岩不仅在碱度方面具有很高的差异性,而且在小规模的Ta以及较少程度的Sn方面也有望成为目标。伟晶岩还提供了Fe-Mn和Nb-Ta分级分离的第一个实例,可将花岗岩连续生成含锡石的伟晶岩,完美展现了相应类别的伟晶岩中初次钴锰矿-钽铁矿建立的相似的分馏趋势。铀矿和Th岩的成因由铁矿和尿囊石的存在来指示,而热液矿化的证据是形成岩石的矿物(如长石)的变化和次生矿物(如铀酰)的形成。

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