首页> 外文期刊>Mineralogy and Petrology >Composition of coexisting zircon and xenotime in rare-metal granites from the Krusne Hory/Erzgebirge Mts. (Saxothuringian Zone, Bohemian Massif)
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Composition of coexisting zircon and xenotime in rare-metal granites from the Krusne Hory/Erzgebirge Mts. (Saxothuringian Zone, Bohemian Massif)

机译:Krusne Hory / Erzgebirge山的稀有金属花岗岩中锆石和xenotime的共存组成。 (波希米亚地块的萨克斯图林根地区)

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摘要

Zircon and xenotime, from two mineralogically and chemically contrasting granite suites occurring in the Krusne Hory/Erzgebirge Mts., display extended compositional variability with respect to abundances of Zr, Hf, REE, Y, P, Th, Ca, Al, Fe and As. According to their geochemical signatures, P-rich (S-type) and P-poor (A-type) granites could be distinguished here. Both granite suites display high Ga/Al ratios (>2.6) and according to FeO_(tot.)/(FeO_(tot) + MgO) ratio can be classified as ferrous granites. Consequently, the both ratios cannot be used for discrimination S- and A-type granites. Both minerals are characterized by a variety of complex zircon-xenotime textures. They are usually strong hydrated and enriched in F. Zircon from P-rich granites displays a significant enrichment in P (up 0.24 apfu P), whereas zircon from P-poor granites has lower P and higher Y (up to 0.15 apfu Y). The xenotime-type substitution is the most important mechanism of isomorphic substitution in zircon in both granite suites. Zircon from both granite suites is typically enriched in Hf, especially unaltered zircon from P-rich granites (up to 8.2 wt. % HfO_2). However in altered zircons the Hf/Zr ratio is higher in the P-poor granites.
机译:锆石和xenotime分别来自Krusne Hory / Erzgebirge山中的两个矿物学和化学对比花岗岩组,它们在Zr,Hf,REE,Y,P,Th,Ca,Al,Fe和As的丰度方面显示出扩展的成分变异性。 。根据它们的地球化学特征,这里可以区分富P(S型)和贫P(A型)花岗岩。两种花岗岩套件均显示出高的Ga / Al比(> 2.6),并且根据FeO_(tot。)/(FeO_(tot)+ MgO)的比率可以归类为含铁花岗岩。因此,这两个比率均不能用于区分S型和A型花岗岩。两种矿物均具有多种复杂的锆石-xenotime纹理。它们通常具有很强的水化作用并富含F。富含P的花岗岩中的锆石显示P含量显着富集(最高为0.24 apfu P),而贫P的花岗岩中的锆石具有较低的P和更高的Y(最高0.15 apfu Y)。两种花岗岩套件中,异种时间类型的替代是锆石中同构替代的最重要机制。来自两个花岗岩组的锆石通常富含Hf,尤其是富含P的花岗岩中未改变的锆石(最高8.2 wt。%HfO_2)。但是,在贫锆石中,贫P花岗岩中的Hf / Zr比较高。

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