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The genetic significance of snowball quartz in highly fractionated tin granites of the Krusne Hory/Erzgebirge

机译:雪球石英在Krusne Hory / Erzgebirge高度分馏的锡花岗岩中的遗传意义

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Snowball-textured quartz phenoblasts are magmatic-hydrothermal fluid saturation textures and occur widespread in highly evolved alkali feldspar and topaz-bearing granites. They are characterized by zonal arrangement of entrapped matrix minerals (albite, K-feldspar, mica) alternating with inclusion-free zones. Case studies from the Schellerhau and Podlesi granites (Erzgebirge/Krusne Hory) showed a crystallization sequence albite-K-feldspar-Li-mica-snowball quartz. If the growth velocity increased rapidly, beside silicate melt drops also predating and simulatanously formed matrix minerals were overgrown and trapped in the quartz. CL and growth zoning studies indicate a kinetically caused increase of the growth velocity with crystal size in a nearly non-convecting crystal mush. Wavy zones of snowball quartz are interpreted as products of small scale diffusion fronts which lead to the change of CL properties developed during the crystal growth and caused by rapid variation of the melt conditions.
机译:雪球织地不很细石英苯上浆是岩浆 - 水热流体饱和纹理,并且在高度进化的碱性长石和桃花心木花岗岩中发生普遍。它们的特征在于与无包含区域交替的夹带基质矿物(Albite,K-Feldspar,云母)的区域排列。 Schellerhau和Podlesi花岗岩(Erzgebirge / Krusne Horly)的案例研究显示了结晶序列AliTe-K-Feldspar-Li-Mida-Snowball石英。如果生长速度迅速增加,则硅酸盐熔体下降,也捕获和模拟形成的基质矿物质覆盖覆盖并捕获在石英中。 CL和生长分区研究表明,在几乎非对流的晶体糊中,具有晶体尺寸的生长速度增加的动力学。雪球石英的波浪区被解释为小型扩散前端的产品,这导致晶体生长期间产生的CL特性的变化,并引起熔体条件的快速变化。

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