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首页> 外文期刊>The American mineralogist >An experimental study of trace-element partitioning between Ti-Al-clinopyroxene and melt: Equilibrium and kinetic effects including sector zoning
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An experimental study of trace-element partitioning between Ti-Al-clinopyroxene and melt: Equilibrium and kinetic effects including sector zoning

机译:Ti-Al-斜茂铁与熔体之间痕量元素分配的实验研究:平衡和动力学效应,包括扇区分区

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摘要

Equilibrium and dynamic crystallization experiments were used to determine distribution coefficients (D-values) for the REE and the trace elements Se, V, Rb, Sr, Y, Zr, Nb, Ba, Hf, Th, and U between Ti-Al-clinopyroxene and melt. Equilibrium values for D correlate well with previous studies where values have been determined. The D-values were also studied as a function of cooling rate. Increased cooling rates produce higher growth rates. At growth rates that exceed the diffusion rates in the crystals, the D-values increase to near unity and the HREE D-values exceed unity only at the most rapid crystal growth rates. The increase in D-values is the result of the inclusion of components into the growing pyroxene from the boundary layer that develops at the crystal-melt interface because of the disparity between the growth and diffusion rates. The origin of sector zoning is best explained as an interplay of primarily crystallographic control with kinetic effects.
机译:使用平衡和动态结晶实验确定REE和Ti-Al-之间的痕量元素Se,V,Rb,Sr,Y,Zr,Nb,Ba,Hf,Th和U的分布系数(D值) Clinopyroxene并熔化。 D的平衡值与以前确定了值的研究很好地相关。还研究了D值作为冷却速率的函数。冷却速率的提高产生更高的增长率。当生长速率超过晶体中的扩散速率时,D值增加到接近统一,而HREE D值仅在最快的晶体生长速率时才超过统一。 D值的增加是由于生长和扩散速率之间的差异,组分从晶体熔体界面处形成的边界层包含到正在生长的辉石中。最好将扇区分区的起源解释为主要是晶体学控制与动力学效应的相互作用。

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