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Immiscible silicate liquid partition coefficients: Implications for crystal-melt element partitioning and basalt petrogenesis

机译:不混溶的硅酸盐液体分配系数:对晶体熔体元素分配和玄武岩成岩的意义

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摘要

This study investigates partitioning of elements between immiscible aluminosilicate and borosilicate liquids using three synthetic mixtures doped with 32 trace elements. In order to get a good spatial separation of immiscible liquids, we employed a hightemperature centrifuge. Experiments were performed at 1,050-1,150C, 1 atm, in sealed Fe and Pt containers.udQuenched products were analysed by electron microprobeudand LA ICP-MS. Nernst partition coefficients (D's) between the Fe-rich and Si-rich aluminosilicate immiscible liquids are the highest for Zn (3.3) and Fe (2.6) and the lowest for Rb and K (0.4-0.5). The plots of D values against ionic potential Z/r in all the compositions show a convex upward trend, which is typical also for element partitioning between immiscible silicate and salt melts. The results bear upon the speciation and structural position of elements in multicomponent silicate liquids. The ferrobasalt-rhyolite liquid immiscibility is observed in evolved basaltic magmas, and may play an important role in large gabbroic intrusions, such as Skaergaard, and during the generation of unusual lavas, such as ferropicrites.
机译:这项研究研究了使用32种微量元素掺杂的三种合成混合物,在不混溶的铝硅酸盐和硼硅酸盐液体之间分配元素。为了获得不混溶液体的良好空间分离,我们采用了高温离心机。在密闭的Fe和Pt容器中于1,050-1,150°C,1个大气压下进行实验。 ud通过电子微探针和LA ICP-MS分析淬灭的产物。富铁和富硅的铝硅酸盐不混溶液体之间的能斯特分配系数(D's)对于Zn(3.3)和Fe(2.6)最高,而对Rb和K最低(0.4-0.5)。在所有组成中D值相对于离子电势Z / r的曲线均显示出向上凸的趋势,这对于不溶混的硅酸盐和盐熔体之间的元素分配也是典型的。结果涉及多组分硅酸盐液体中元素的形态和结构位置。在演化的玄武岩浆中观察到铁玄武岩-流纹岩的液体不溶混性,并且可能在大型辉长岩侵入岩(如Skaergaard)以及异常熔岩(如铁锰矿)的生成过程中发挥重要作用。

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