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Experimental constraints on light elements in the Earth’s outer core

机译:对地球外核中轻元素的实验约束

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摘要

Earth’s outer core is liquid and dominantly composed of iron and nickel (~5–10 wt%). Its density, however, is ~8% lower than that of liquid iron, and requires the presence of a significant amount of light element(s). A good way to specify the light element(s) is a direct comparison of density and sound velocity measurements between seismological data and those of possible candidate compositions at the core conditions. We report the sound velocity measurements of a model core composition in the Fe-Ni-Si system at the outer core conditions by shock-wave experiments. Combining with the previous studies, we found that the best estimate for the outer core’s light elements is ~6 wt% Si, ~2 wt% S, and possible ~1–2.5 wt% O. This composition satisfies the requirements imposed by seismology, geochemistry, and some models of the early core formation. This finding may help us to further constrain the thermal structure of the Earth and the models of Earth’s core formation.
机译:地球的外核是液态的,主要由铁和镍(约5-10wt%)组成。然而,它的密度比铁水的密度低约8%,并且需要大量的轻元素存在。指定轻元素的一个好方法是直接比较地震数据与核心条件下可能的候选成分的密度和声速测量结果。我们通过冲击波实验报告了在外芯条件下,Fe-Ni-Si系统中模型芯成分的声速测量结果。结合先前的研究,我们发现对外层核心轻元素的最佳估算是〜6 wt%的Si,〜2 wt%的S和可能的〜1-2.5%wt%的O。这种成分满足地震学的要求,地球化学以及一些早期岩心形成的模型。这一发现可能有助于我们进一步限制地球的热结构和地球核心形成的模型。

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