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首页> 外文期刊>Doklady Earth Sciences >Dissolution of Pyrochlore and Microlite in Alkaline, Subaluminous, and Peraluminous Granitoid Melts
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Dissolution of Pyrochlore and Microlite in Alkaline, Subaluminous, and Peraluminous Granitoid Melts

机译:吡壁和微渗在碱性,亚次糖和衰减量熔化中的溶解

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摘要

The data of experiments are presented on the Ta and Nb concentrations in acidic magma melts of various compositions upon dissolution of pyrochlore and microlite at 650-850 degrees C and 100-400 MPa, which allow one to obtain quantitative characteristics to create physicochemical models of the genesis of Ta-Nb deposits. Upon the dissolution of pyrochlore in granitoid melts at 100 MPa, the maximum Nb content of 0.7-1.9 wt % was found in alkaline solutions, with a decrease to 0.06-0.38 wt % and a moderate increase to 0.11-0.41 wt % in sub- and peraluminous melts, respectively. The growth in temperature increased the solubility of pyrochlore; the effect of an increase in pressure was ambiguous. Pyrochlore was unstable in peraluminous granite melts. Upon the dissolution of microlite, the Nb/Ta ratio in the melt was nearly doubled with an increase in the alumina content in the melt.
机译:在酸纤维溶解和微甲基溶解在650-850℃和100-400MPa的溶解时,实验数据在酸性岩浆熔体中呈现在酸性岩浆颗粒上,这使得可以获得造成物理化学模型的定量特征以获得定量特征以产生物理化学模型TA-NB沉积的成因。在100MPa下烧焦烧焦熔化时,在碱性溶液中发现0.7-1.9wt%的最大Nb含量,下降至0.06-0.38wt%,增量增加至0.1-0.41wt%和灭菌融化。温度的增长增加了辉芯的溶解度;压力增加的效果是模糊的。在灭菌花岗岩熔体中不稳定。在微渗溶解后,熔体中的Nb / Ta比几乎加倍,熔体中的氧化铝含量增加。

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  • 来源
    《Doklady Earth Sciences》 |2019年第2期|1465-1468|共4页
  • 作者单位

    Russian Acad Sci Korzhinskii Inst Expt Mineral Chernogolovka 142432 Russia;

    Russian Acad Sci Korzhinskii Inst Expt Mineral Chernogolovka 142432 Russia;

    Russian Acad Sci Korzhinskii Inst Expt Mineral Chernogolovka 142432 Russia;

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