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ORIGIN OF MYRMEKITE IN THE LIGHT OF PHASE RELATIONS IN THE QUARTZ-FELDSPAR SYSTEM

机译:从石英-费尔德斯帕尔体系的相关系出发,黑硅藻土的起源

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摘要

Myrmekite (a quartz-feldspar intergrowth) is widespread within two-feldspar granites and geneisses, occasionally in occurs in anorthosites. The study of granitic rocks from the Urals and a search through literature sources have shown that the typical features of myrmekite are very stable, i.e. indicating the universal mechanism of its formation. According to the proposed model, the principal cause of myrmekite origination relates to the metastable melting and crystallization of plagioclase. Natural silicate melts contain the more calcium plagioclase, whereas the conjugated solid phases, on the contrary, are poorer in anorthite as compared with the thermodynamic equilibrium. Crystallization of myrmekite replacing the potassic feldspar in granites and gneisses, or the andesine-labrador in anorthosites, shifts the phase relations towards the equilibrium. Myrmekite is formed both at the final stage of crystallization and during the ultrametamorphism process as a result of interaction between the previously formed feldspars and a water fluid coexisting with a silicate melt under the close-to-solidus temperature.
机译:Myrmekite(石英-长石共生体)广泛分布于两长石花岗岩和矿床中,偶尔发生在钙长石中。对来自乌拉尔的花岗岩岩石的研究以及对文献资料的搜索表明,黑钙石的典型特征非常稳定,即表明了其形成的普遍机制。根据提出的模型,黑闪石起源的主要原因与斜长石的亚稳态熔化和结晶有关。天然硅酸盐熔体包含更多的斜长石钙,而与热力学平衡相比,共轭固相的钙长石的质量较差。花岗岩和片麻岩中的钾长石取代长石中的钾长石,或钙长石中的安山岩-拉布拉多结晶,使相关系向平衡方向移动。在接近固相线温度下,由于预先形成的长石与与硅酸盐熔体共存的水流体之间的相互作用,在结晶的最后阶段和超变质过程中均形成了黑硅铝石。

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