【2h】

New host for carbon in the deep Earth

机译:地球深处碳的新宿主

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摘要

The global geochemical carbon cycle involves exchanges between the Earth’s interior and the surface. Carbon is recycled into the mantle via subduction mainly as carbonates and is released to the atmosphere via volcanism mostly as CO2. The stability of carbonates versus decarbonation and melting is therefore of great interest for understanding the global carbon cycle. For all these reasons, the thermodynamic properties and phase diagrams of these minerals are needed up to core mantle boundary conditions. However, the nature of C-bearing minerals at these conditions remains unclear. Here we show the existence of a new Mg-Fe carbon-bearing compound at depths greater than 1,800 km. Its structure, based on three-membered rings of corner-sharing (CO4)4- tetrahedra, is in close agreement with predictions by first principles quantum calculations [Oganov AR, et al. (2008) Novel high-pressure structures of MgCO3, CaCO3 and CO2 and their role in Earth’s lower mantle. Earth Planet Sci Lett 273:38–47]. This high-pressure polymorph of carbonates concentrates a large amount of Fe(III) as a result of intracrystalline reaction between Fe(II) and (CO3)2- groups schematically written as 4FeO + CO2 → 2Fe2O3 + C. This results in an assemblage of the new high-pressure phase, magnetite and nanodiamonds.
机译:全球地球化学碳循环涉及地球内部和表面之间的交换。碳主要通过碳酸盐的俯冲作用循环到地幔中,并通过火山作用释放到大气中,主要是二氧化碳。因此,碳酸盐相对于脱碳和熔融的稳定性对于理解全球碳循环具有重大意义。由于所有这些原因,需要这些矿物的热力学性质和相图,直到核心地幔边界条件。然而,在这些条件下含碳矿物的性质仍不清楚。在这里,我们显示了一种深度大于1,800 km的新型Mg-Fe含碳化合物的存在。它的结构基于三元角共享(CO4) 4-四面体的三元环,与第一原理量子计算的预测非常吻合[Oganov AR,et al。 (2008)MgCO3,CaCO3和CO2的新型高压结构及其在地球下地幔中的作用。地球行星科学通讯273:38–47]。由于Fe (II)和(CO3) 2-的晶内反应,这种碳酸盐的高压多晶型物浓缩了大量的Fe (III) 组示意性地表示为4FeO + CO2→2Fe2O3 + C.这导致了新的高压相,磁铁矿和纳米金刚石的组合。

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