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Iron partitioning in Earth's mantle: Toward a deep lower mantle discontinuity

机译:地球地幔中的铁划分:朝向深层下地幔不连续

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We measured the spin state of iron in ferropericlase (Mg0.83Fe0.17)O at high pressure and found a high-spin to low-spin transition occurring in the 60- to 70-gigapascal pressure range, corresponding to depths of 2000 kilometers in Earth's lower mantle. This transition implies that the partition coefficient of iron between ferropericlase and magnesium silicate perovskite, the two main constituents of the lower mantle, may increase by several orders of magnitude, depleting the perovskite phase of its iron. The lower mantle may then be composed of two different layers. The upper layer would consist of a phase mixture with about equal partitioning of iron between magnesium silicate perovskite and ferropericlase, whereas the lower layer would consist of almost iron-free perovskite and iron-rich ferropericlase. This strati. cation is likely to have profound implications for the transport properties of Earth's lowermost mantle. [References: 26]
机译:我们在高压下测量了铁镁铁(Mg0.83Fe0.17)O中铁的自旋状态,发现在60至70吉帕斯卡的压力范围内发生了高旋向低旋的转变,对应于2000公里的深度。地球的下地幔。这种转变暗示着铁在铁硅藻酸酶和硅酸镁钙钛矿(下地幔的两个主要成分)之间的分配系数可能会增加几个数量级,从而耗尽其铁的钙钛矿相。然后,下地幔可以由两个不同的层组成。上层将由相混合物组成,其中铁在硅酸镁钙钛矿和亚铁皂苷酶之间的分配大致相等,而下层将由几乎不含铁的钙钛矿和富铁的亚铁皂苷组成。这个策略。阳离子可能对地球最下层地幔的传输特性产生深远影响。 [参考:26]

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