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Depletion of potassium and sodium in mantles of Mars Moon and Vesta by core formation

机译:火星月球和维斯塔地幔中核形成对钾和钠的消耗

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摘要

The depletions of potassium (K) and sodium (Na) in samples from planetary interiors have long been considered as primary evidence for their volatile behavior during planetary formation processes. Here, we use high-pressure experiments combined with laser ablation analyses to measure the sulfide-silicate and metal-silicate partitioning of K and Na at high pressure (P) – temperature (T) and find that their partitioning into metal strongly increases with temperature. Results indicate that the observed Vestan and Martian mantle K and Na depletions can reflect sequestration into their sulfur-rich cores in addition to their volatility during formation of Mars and Vesta. This suggests that alkali depletions are not affected solely by incomplete condensation or partial volatilization during planetary formation and differentiation, but additionally or even primarily reflect the thermal and chemical conditions during core formation. Core sequestration is also significant for the Moon, but lunar mantle depletions of K and Na cannot be reconciled by core formation only. This supports the hypothesis that measured isotopic fractionations of K in lunar samples represent incomplete condensation or extensive volatile loss during the Moon-forming giant impact.
机译:长期以来,行星内部样品中钾(K)和钠(Na)的消耗一直被认为是行星形成过程中挥发行为的主要证据。在这里,我们使用高压实验结合激光烧蚀分析来测量在高压(P)-温度(T)下钾和钠的硫化物-硅酸盐和金属硅酸盐的分配,发现它们在金属中的分配随着温度的增加而强烈增加。结果表明,观察到的维斯坦和火星地幔钾和钠的消耗,除了在火星和维斯塔形成过程中的挥发性外,还可以反映出其富硫核心的固存。这表明碱耗竭不仅不受行星形成和分化过程中不完全凝结或部分挥发的影响,而且另外或什至主要反映了岩心形成过程中的热和化学条件。核心固存对月球也很重要,但是仅通过核心形成无法解决K和Na的月幔消耗。这支持了以下假设:在月球形成的巨大撞击过程中,测得的月球样品中K的同位素分馏表示不完全凝结或广泛的挥发损失。

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