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Carbonates at high pressures: Possible carriers for deep carbon reservoirs in the Earth's lower mantle

机译:高压碳酸盐:地球下地幔深层碳库的可能载体

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The high-pressure structural and elastic properties of MgCO3, CaCO3, and MgCa(CO3)(2) have been investigated with density functional theory. By computing the isotropic elastic constants, we found that the bulk and shear acoustic wave velocities are smaller in carbonates than in their respective silicates for a wide range of pressure. In terms of geophysics, these results provide strong evidence that the low-velocity zones, near the bottom of the Earth's lower mantle, could be associated with the presence of carbon element in the form of carbonate minerals. This is a different model, associated with chemical differentiation, to explain those low-velocity zones, in addition to several other recent ones proposed in the literature.
机译:利用密度泛函理论研究了MgCO3,CaCO3和MgCa(CO3)(2)的高压结构和弹性特性。通过计算各向同性的弹性常数,我们发现,在很大的压力范围内,碳酸盐岩中的体波和切变声波速度要比其各自的硅酸盐中的小。在地球物理学方面,这些结果提供了有力的证据,表明靠近地球下地幔底部的低速带可能与碳酸盐矿物形式的碳元素的存在有关。除了文献中提出的其他几个新近的模型外,这是一个与化学差异相关的不同模型来解释那些低速带。

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