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压力引起的地幔中铝钛矿压缩机制的变化。

Pressure-induced changes in the compression mechanism of aluminous perovskite in the Earth's mantle.

作者信息

Brodholt JP

机构信息

Department of Geological Sciences, University College London, UK.

出版信息

Nature. 2000 Oct 5;407(6804):620-2. doi: 10.1038/35036565.

Abstract

Although aluminium is the fifth most abundant element in the Earth's mantle, its effect on the physical properties of perovskite, the main mineral phase in the lower mantle, has largely been ignored. It is becoming clear, however, that many properties of MgSiO3 perovskites are remarkably sensitive to small amounts of aluminium. In particular, perovskite with only 5 wt% Al2O3 has a bulk modulus 10% lower than that of the pure magnesian end-member. The increased compressibility may be due to the high concentrations of oxygen vacancies required to balance the charge of the aluminium; if so, this would have important consequences for the mantle, as aluminous perovskites could be weaker, have lower seismic velocities and be hosts for water. To test whether oxygen vacancies exist in aluminous perovskites, I have calculated the compressibility of end-member defect-bearing perovskites using ab initio methods. The results show that perovskites with oxygen vacancies do have significantly greater compressibilities than those without such vacancies. But the results also suggest that oxygen vacancies become unfavourable at high pressures, in which case only the physical properties of the shallow lower mantle would be affected by aluminium-with the deeper mantle retaining properties similar to those of aluminium-free perovskite.

摘要

尽管铝是地球地幔中含量第五丰富的元素,但其对钙钛矿(下地幔中的主要矿物相)物理性质的影响在很大程度上被忽视了。然而,越来越明显的是,MgSiO₃钙钛矿的许多性质对少量铝非常敏感。特别是,仅含有5 wt% Al₂O₃的钙钛矿的体积模量比纯镁端元低10%。可压缩性增加可能是由于平衡铝电荷所需的高浓度氧空位;如果是这样,这将对地幔产生重要影响,因为含铝钙钛矿可能更弱,地震波速度更低,并且是水的宿主。为了测试含铝钙钛矿中是否存在氧空位,我使用从头算方法计算了含缺陷端元钙钛矿的可压缩性。结果表明,有氧空位的钙钛矿的可压缩性确实比没有此类空位的钙钛矿大得多。但结果也表明,氧空位在高压下变得不利,在这种情况下,只有浅部下地幔的物理性质会受到铝的影响,而深部地幔保留与无铝钙钛矿相似的性质。

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