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Evidence for the charge disproportionation of iron in extraterrestrial bridgmanite

机译:在外星狂热管理中熨斗的丧失态度的证据

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Bridgmanite, MgSiO 3 with perovskite structure, is considered the most abundant mineral on Earth. On the lower mantle, it contains Fe and Al that strongly influence its behavior. Experimentalists have debated whether iron may exist in a mixed valence state, coexistence of Fe 2+ and Fe 3+ in bridgmanite, through charge disproportionation. Here, we report the discovery of Fe-rich aluminous bridgmanite coexisting with metallic iron in a shock vein of the Suizhou meteorite. This is the first direct evidence in nature of the Fe disproportionation reaction, which so far has only been observed in some high-pressure experiments. Furthermore, our discovery supports the idea that the disproportionation reaction would have played a key role in redox processes and the evolution of Earth.
机译:Bridgmanite,Mgsio 3与Perovskite结构,被认为是地球上最丰富的矿物质。在较低的地幔上,它包含强烈影响其行为的FE和AL。实验主义者对铁可以存在于混合价状态,Fe 2+和Bridgmanite的Fe 3+的共存,通过电荷歧化。在这里,我们在苏州陨石的冲击静脉中报告了用金属铁的食品富含灰色的灰白色矿石共存。这是Fe歧化反应性质中的第一种直接证据,其迄今为止在一些高压实验中仅观察到。此外,我们的发现支持了歧视过程中歧视过程中的关键作用和地球的演变。

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