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Low hydrogen contents in the cores of terrestrial planets

机译:陆地行星核心中的氢含量低

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Hydrogen has been thought to be an important light element in Earth’s core due to possible siderophile behavior during core-mantle segregation. We reproduced planetary differentiation conditions using hydrogen contents of 450 to 1500 parts per million (ppm) in the silicate phase, pressures of 5 to 20 GPa, oxygen fugacity varying within IW-3.7 and IW-0.2 (0.2 to 3.7 log units lower than iron-wüstite buffer), and Fe alloys typical of planetary cores. We report hydrogen metal-silicate partition coefficients of ~2 × 10?1, up to two orders of magnitude lower than reported previously, and indicative of lithophile behavior. Our results imply H contents of ~60 ppm in the Earth and Martian cores. A simple water budget suggests that 90% of the water initially present in planetary building blocks was lost during planetary accretion. The retained water segregated preferentially into planetary mantles.
机译:氢被认为是地球核心中的重要轻元素,这是由于在核心-地幔隔离过程中可能存在亲铁性行为。我们通过使用硅酸盐相中的氢含量为450至1500 ppm(百万分之五),压力为5至20 GPa,氧逸度在IW-3.7和IW-0.2之间变化(比铁低0.2至3.7 log单位)来再现行星分化条件-wustite缓冲剂)和典型的行星芯铁合金。我们报道的氢金属-硅酸盐分配系数为〜2×10 ?1 ,比先前报道的水平降低了两个数量级,表明了亲石行为。我们的结果表明地球和火星核心中的H含量约为60 ppm。一个简单的水预算表明,最初在行星积木中存在的水有90%在行星积聚过程中流失了。保留的水优先分离成行星地幔。

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