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Water (hydrogen) in the lunar mantle: Results from petrology and magma ocean modeling

机译:月球地幔中的水(氢):岩石学和岩浆海洋模拟的结果

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摘要

Measurements of hydroxyl or water in lunar materials are being used to suggest that melting source regions within the Moon contained tens to hundreds of ppm water. The compositions of magmatic source regions in the Moon can be calculated using magma ocean fractional solidification models, given an initial bulk composition. Our magma ocean models demonstrate that to make a source region with 10 to 200. ppm water, the bulk magma ocean must contain 100 to 1000. ppm water or more (and in a 1000-km deep lunar magma ocean, 1000. ppm water is equivalent to ~. 5% of an Earth ocean by weight).As solidification of the magma ocean continues water and other incompatible elements are progressively enriched in the evolving liquids. The final KREEP-like liquids would contain the greatest fraction of water. We suggest that a bulk magma ocean with over ~. 100. ppm water is prohibited by constraints on these KREEP-like final magma ocean liquids, and by the thermodynamic equilibrium requirement with metallic iron in mare basalts.We conclude that bulk lunar interior water contents must be at the low end of the range posited by recent observations (<~. 10. ppm), though some water from later impacts may have been assimilated into lunar magmas. Most importantly, given the oxygen fugacity of lunar rocks, hydrogen would be expected to be an important volatile species equal to or within an order of magnitude of the abundance of water in a lunar magma.
机译:月球物质中羟基或水的测量被用于表明月球内部的融化源区域含有数十至数百ppm的水。在给定初始体积成分的情况下,可以使用岩浆海洋分数凝固模型来计算月球上的岩浆源区的成分。我们的岩浆海洋模型表明,要使水源区含10至200. ppm ppm的水,散装岩浆海洋必须包含100至1000. ppm ppm的水或更多(在1000公里深的月球岩浆海中,1000 ppm的水是约占地球海洋重量的5%)。随着岩浆海洋的持续凝固,水和其他不相容元素逐渐在不断发展的液体中富集。最终的KREEP类液体将包含最大量的水。我们建议在超过〜的大块岩浆海洋中使用。限制了这些KREEP类最终岩浆海洋液体的含量,以及母马玄武岩中金属铁的热力学平衡要求,从而禁止了100 ppm水。我们得出结论,整个月球内部水含量必须处于以下条件所确定的范围的低端:最近的观测结果(<〜。10. ppm),尽管后来撞击产生的一些水可能已被同化为月球岩浆。最重要的是,鉴于月球岩石的氧逸度,氢将被认为是重要的挥发性物质,与月球岩浆中水的含量相等或在其数量级之内。

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