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The Earth's missing lead may not be in the core

机译:地球缺少的铅可能不在核心

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Relative to the CI chondrite class of meteorites (widely thought to be the 'building blocks' of the terrestrial planets), the Earth is depleted in volatile elements. For most elements this depletion is thought to be a solar nebular signature, as chondrites show depletions qualitatively similar to that of the Earth. On the other hand, as lead is a volatile element, some Pb may also have been lost after accretion. The unique ~(206)Pb/~(204)Pb and ~(207)Pb/~(204)Pb ratios of the Earth's mantle suggest that some lead was lost about 50 to 130Myr after Solar System formation. This has commonly been explained by lead lost via the segregation of a sulphide melt to the Earth's core, which assumes that lead has an affinity towards sulphide. Some models, however, have reconciled the Earth's lead deficit with volatilization. Whichever model is preferred, the broad coincidence of U-Pb model ages with the age of the Moon suggests that lead loss may be related to the Moon-forming impact. Here we report partitioning experiments in metal-sulphide-silicate systems. We show that lead is neither siderophile nor chalcophile enough to explain the high U/Pb ratio of the Earth's mantle as being a result of lead pumping to the core. The Earth may have accreted from initially volatile-depleted material, some lead may have been lost to degassing following the Moon-forming giant impact, or a hidden reservoir exists in the deep mantle with lead isotope compositions complementary to upper-mantle values; it is unlikely though that the missing lead resides in the core.
机译:相对于CI陨石类陨石(被广泛认为是地球行星的“构建基块”),地球上的挥发性元素被消耗掉了。对于大多数元素来说,这种损耗被认为是太阳星云的特征,因为球粒陨石显示出其损耗在质量上与地球相似。另一方面,由于铅是挥发性元素,因此积聚后可能还会损失一些铅。地球地幔的独特的〜(206)Pb /〜(204)Pb和〜(207)Pb /〜(204)Pb比表明,太阳系形成后约50至130Myr失去了一些铅。通常通过将硫化物熔体隔离到地球核心而导致铅损失的现象来解释这一点,假定铅对硫化物具有亲和力。但是,某些模型已经使地球的铅缺乏与挥发得以协调。无论采用哪种模型,U-Pb模型年龄与月球年龄的广泛吻合都表明铅损失可能与形成月球的影响有关。在这里,我们报告了金属硫化物-硅酸盐系统中的分区实验。我们表明,铅既不嗜铁也不嗜硫,不足以解释铅被泵送到岩心的结果是地球地幔的高U / Pb比。地球可能从最初的贫乏物质中吸出,一些铅可能在形成月球的巨大撞击后失去了脱气性,或者在深地幔中存在一个隐伏的储层,铅同位素组成与上地幔值互补;尽管丢失的潜在客户不会驻留在核心中,但这种可能性不大。

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