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The incorporation of water into lower-mantle perovskites: A first-principles study

机译:将水掺入下地幔钙钛矿中:第一性原理研究

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摘要

We have used first principles methods to calculate the partitioning of water between perovskite and ringwoodite under lower mantle and Fe-free conditions. We find that incorporation of water into ringwoodite is more favourable than into perovskite by about 0.25. eV per formula unit, or about 24. kJ/mol. This translates to a ringwoodite to perovskite partition coefficient of between 10 and 13, depending on temperature. These values are in good agreement with the partitioning experiments of Inoue et al. (2010) on Fe-bearing samples, where they find a partition coefficient of about 15. We also find that water incorporates into perovskite more readily than into periclase (also under Fe-free conditions), and we predict a perovskite to periclase partition coefficient of 90 at 24. GPa and 1500. K. We conclude, therefore, that the lower-mantle is able to contain substantial amounts of water, perhaps as much as 1000. ppm. © 2013 Elsevier B.V.
机译:我们使用了第一原理方法来计算在较低地幔和无铁条件下钙钛矿和林伍德石之间的水分配。我们发现,将水掺入林木中比掺入钙钛矿中约0.25更有利。每个公式单位eV,或约24 kJ / mol。取决于温度,这将使林铁矿与钙钛矿的分配系数介于10和13之间。这些值与Inoue等人的分配实验非常吻合。 (2010)在含铁的样品中,他们发现分配系数约为15。我们还发现水比钙镁石更容易掺入钙钛矿中(同样在无铁条件下),我们预测钙铁矿对钙镁石的分配系数在24. GPa和1500. K时为90。因此,我们得出的结论是,下地幔能够容纳大量的水,也许多达1000. ppm。 ©2013 Elsevier B.V.

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