首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Compression of FeSi, Fe_3C, Fe_(0.95)O, and FeS under the core pressures and implication for light element in the Earth's core
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Compression of FeSi, Fe_3C, Fe_(0.95)O, and FeS under the core pressures and implication for light element in the Earth's core

机译:FeSi,Fe_3C,Fe_(0.95)O和FeS在核心压力下的压缩及其对地球核心中轻元素的影响

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The light alloying element in the Earth's core has not been identified yet. Here we determined the pressure-volume equations of state of FeSi, Fe_3C, and Fe_(0.95)O in the core pressure range by a combination of diamond-anvil cell and synchrotron X-ray diffraction techniques. Both B2-type FeSi and Fe_3C cementite were preserved to 180 and 187 GPa,respectively. The rhombohedrally-distorted B1 phase of Fe_(0.95)O was measured up to 186 GPa, and the distorted B8-type Fe_(0.95)O was observed between 170 and 226 GPa.Combined with our previous data on FeS VI and B2-type VII phases to 270 GPa, we discuss the light element in the outer core by comparing the densities and compressibilities of these iron compounds with seismologically-estimated density profile in the core.Substitution of light element, particularly carbon and oxygen, in iron not only reduces the density but also enhances the compressibility remarkably. The core profile is therefore not reconciled with Fe-C and Fe-O compounds, while the densities and compressibilities of Fe-Si and Fe-S alloys match the observations. Carbon and oxygen may not be a predominant light element in the Earth's outer core, leaving silicon and sulfur as strong candidates.
机译:尚未发现地球核心中的轻合金元素。在这里,我们结合金刚石砧盒和同步加速器X射线衍射技术确定了在核心压力范围内的FeSi,Fe_3C和Fe_(0.95)O的状态的压力-体积方程。 B2型FeSi和Fe_3C渗碳体分别保持在180 GPa和187 GPa。测出Fe_(0.95)O的菱形扭曲B1相高达186 GPa,在170至226 GPa之间观察到扭曲的B8型Fe_(0.95)O。结合我们先前关于FeS VI和B2型的数据VII相至270 GPa,我们通过比较这些铁化合物的密度和可压缩性与地震测算的铁心密度分布来讨论外核中的轻元素。铁中的轻元素特别是碳和氧的取代不仅减少了铁的含量密度,但也显着提高可压缩性。因此,芯部轮廓与Fe-C和Fe-O化合物不一致,而Fe-Si和Fe-S合金的密度和压缩率与观察结果相符。碳和氧可能不是地球外核中主要的轻元素,而硅和硫则是强候选者。

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