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首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >Textural Features and Chemical Evolution in Ta-Nb Oxides: Implications for Deuteric Rare-Metal Mineralization in the Yichun Granite-Marginal Pegmatite, Southeastern China
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Textural Features and Chemical Evolution in Ta-Nb Oxides: Implications for Deuteric Rare-Metal Mineralization in the Yichun Granite-Marginal Pegmatite, Southeastern China

机译:TA-NB氧化物的纹理特征和化学进化:榆次稀土化在中国东南部宜春稀土化岩石中的影响

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摘要

The genesis of Ta-Nb oxides in granitoid environments and, in particular, the role of deuteric fluids in Ta-Nb ore formation remain controversial. Ta-Nb oxides in the Yichun deposit occur disseminated in a topaz lepidolite granite and in the intermediate zone of a zoned marginal pegmatite. Columbite-group minerals and microlite are the principal ore minerals in this topaz lepidolite granite. The principal Ta-Nb oxides in aplite of the marginal pegmatite are columbite-(Mn), tantalite-(Mn), and wodginite-group minerals. Ta-Nb oxides in the topaz lepidolite granite and aplite are mostly prismatic crystals or aggregates associated with lepidolite and albite, whereas in the pegmatitic intermediate zone, they occur in triplite-dominated nodules as aggregates of acicular columbite-(Mn) in association with fibrous molybdenite, zircon, and native bismuth. Most columbite-group minerals in the topaz lepidolite granite and aplite have a columbite-(Mn) core (stage I), overgrown and resorbed by a later stage II columbite-group mineral overgrowth that is distinctly richer in Ta than the stage I crystals. Textural and chemical features of the stage I crystals are consistent with a magmatic origin. Where stage I crystals are enclosed by snowball quartz, there is no overgrowth, and these crystals are richer in Nb, Sc, Fe, Ti, Y, Zr, U, Th, and W, and thus are more primitive in composition than those outside the snowball quartz. Stage II overgrowths have two to five times higher Ta/(Nb + Ta) values than stage I cores, such that is there is a large compositional gap between core and overgrowth, although the Mn/(Mn + Fe) values of the two stages are similar. Subsequent to formation of the stage II overgrowths in aplite, but not in the topaz lepidolite granite, the columbite-group minerals were altered and overgrown by wodginite-group minerals (stage III), with concomitant precipitation of cassiterite, zircon, and uraninite, requiring interaction of the stage II crystals with a liquid that contained high field strength elements and Sn. The textural relationships and the chemical features suggest that lepidolite, albite, and the snowball quartz at Yichun are all metasomatic.
机译:沉积物环境中的Ta-Nb氧化物的成因,特别是晶体中的作用仍存在涉比。伊春矿床中的TA-NB氧化物在黄玉锂岩岩花岗岩中和分区边缘柚子的中间区进行了散发。 Columbite-Group矿物质和微渗是这款Topaz Lepidolite花岗岩中的主要矿石矿物质。边缘柚子的甲符中的主要TA-NB氧化物是植物系(Mn),钽铁矿 - (Mn)和Wodginite-Group矿物质。 Topaz Lepidolite花岗岩和侧钉中的Ta-Nb氧化物大多是与鳞翅粒和亚沸石相关的棱柱形晶体或聚集体,而在Pegmatitic中间区中,它们在三倍体占主导地位作为与纤维状结合的聚集体作为纤维状的聚集体钼,锆石和原生铋。 Topaz Lepidolite花岗岩和Aplite中大多数植物群矿物质有一个哥伦热 - (Mn)核心(阶段I),过度生长并通过后期阶段II肠矿物过度生长,在TA中明显富有于I级晶体。阶段I晶体的质地和化学特征与岩石起源一致。如果舞台I晶体晶体晶体,则没有过度生长,这些晶体在Nb,sc,fe,ti,y,zr,u,th和w中更富有,因此组成中比外部更原始雪球石英。第II阶段过度生长的TA /(NB + TA)值高于I芯的核心,使得核心和过度生长之间存在大的组成差距,尽管两个阶段的Mn /(Mn + Fe)值是相似的。随后在形成甲段的二期过度生长后,但不在黄玉锂锂花岗岩中,植物粒组矿物质被改变并覆盖了脱酰钛矿矿物(第III阶段),伴随着Cassiterite,锆石和铀矿的沉淀,需要阶段II晶体与包含高场强元件和Sn的液体的相互作用。纹理关系和化学特征表明,伊春的鳞片,阿尔摩特和雪球石英都是态化的。

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