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Changes in the Ta/Nb Ratio in Successively Formed Differentiates of Granite Melt (Calculations Based on Experimental Data)

机译:依次形成花岗岩熔体的区分的Ta / Nb比的变化(基于实验数据计算)

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摘要

Based on experimental data (T = 650-800 degrees C, P = 1-2 kbar) on the solubility of columbite and tantalite in silicate melt and on the distribution of Ta and Nb among coexisting silicate melt, aqueous fluid, and aluminum fluoride melt, we calculated a possible change in the Ta/Nb indicator ratio in residual deeply differentiated granite melts. The Clarke values of these metals in acid rocks of the Earth's crust were taken as their initial contents. The calculations were made by the mass balance method. It is shown that the separation of fluid in the closed magmatic system rock-forming minerals-silicate melt-water can lead to an approximately twice increase in Ta/Nb in the residual melt as compared with the initial Clarke value. In the system rock-forming minerals-silicate melt-aluminum fluoride melt with the initial content of fluorine close to that in biotite granites, the Ta/Nb ratio in the residual melt can increase to similar to 1. Successive crystallization of minerals of the isomorphic columbite-tantalite series can lead to Ta/Nb > 2 in the residual melt. Crystallization of biotite causes a significant increase in Ta/Nb and prevents the accumulation of these metals in the residual silicate melt.
机译:基于实验数据(T = 650-800摄氏度C,P = 1-2 kBar)对植物和钽酸盐在硅酸盐熔体中的溶解度和在共存硅酸盐熔体,含水流体和氟化铝中的Ta和Nb的分布,我们计算了残余深度分化的花岗岩熔体中的Ta / Nb指示比的可能变化。这些金属在地壳的酸性岩石中的克拉克值作为其初始内容。通过质量平衡法进行计算。结果表明,与初始Clarke值相比,在封闭的岩浆系统岩石系统中的流体分离在封闭的岩浆系统岩石体系上岩石形成矿物硅酸盐 - 硅酸盐 - 熔融熔融水在残留熔体中的约两倍。在系统岩石形成矿物 - 硅酸盐熔融铝氟化铝熔融与在Biotite花岗岩中的初始含量接近,残留熔体中的Ta / Nb比率可以增加至类似于同态的矿物质的连续结晶Columbite-Tantalite系列可以导致剩余熔体中的Ta / Nb> 2。 Biotite的结晶导致Ta / Nb的显着增加,并防止这些金属在残留的硅酸盐熔体中的积累。

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