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A new experimental technique for extracting liquids from peridotite at very low degrees of melting: application to partial melting of depleted peridotite

机译:一种以极低的熔融度从橄榄岩中提取液体的新实验技术:应用于贫化橄榄岩的部分熔融

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摘要

A new technique that allows extraction of liquids from peridotite at degrees of melting φ as low as 0.2 wt% is presented. Microfractures that formed in the graphite sample container at the beginning of the experiments were used as traps for the liquid phase. Glass-filled cracks (or 'microdikes') unaffected by quench crystallisation were produced in all experiments and were analysed using standard electron microprobe techniques. Reversal experiments demonstrated that, at moderate degrees of melting (4.4 and 6.5 wt%), the segregated liquid was in equilibrium with the neighbouring peridotite. At very low degrees of melting (0.3 wt%), the liquid in the microdikes failed to fully equilibrate with the peridotite after 5 days and the sandwich technique was used in combination with the microdike technique to approach more closely the equilibrium composition of near-solidus partial melts. The microdike technique was used to study melting of a depleted peridotite at 1 GPa and 1,220 to 1,360 ℃.
机译:提出了一种新技术,该技术能够以低至0.2 wt%的熔融度从橄榄岩中提取液体。实验开始时在石墨样品容器中形成的微裂缝被用作液相阱。在所有实验中均产生了不受淬火结晶影响的玻璃填充裂缝(或“微堤”),并使用标准的电子探针技术对其进行了分析。反向实验表明,在中等程度的熔融度(4.4和6.5 wt%)下,分离出的液体与邻近的橄榄岩处于平衡状态。在非常低的熔融度(0.3重量%)下,微堤中的液体在5天后无法与橄榄岩完全平衡,并且将三明治技术与微堤技术结合使用,以更接近地接近固相线的平衡组成部分融化。用微堤技术研究了耗尽的橄榄岩在1 GPa和1,220至1,360℃下的熔化。

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