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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Equations of state of the high-pressure phases of a natural peridotite and implications for the Earth's lower mantle
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Equations of state of the high-pressure phases of a natural peridotite and implications for the Earth's lower mantle

机译:天然橄榄岩高压相的状态方程及其对地球下地幔的影响

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摘要

To help determine the chemical composition of the Earth's mantle, we characterised the high-pressure mineral assemblage of an undepleted natural peridotite-thought to be representative of the Earth's upper-mantle-to 107 GPa using high-resolution X-ray diffraction. At lower-mantle conditions, the peridotite transforms to the assemblage 76 (±2)% (Mg_(0.88)Fe_(0.05)~(2+)Fe_(0.01)~(3+)Al_(0.12)Si_(0.94))O_3 orthorhombic perovskite by volume (at zero pressure), 17 (±2)% (Mg_(0.80)Fe_(0.20))O magnesiowustite and 7 (±1)% CaSiO_3 perovskite. The measured room-temperature bulk properties of this high-pressure assemblage, together with a range of estimates of thermal properties of the constituent minerals, appear to be inconsistent with seismological constraints on the density and bulk modulus of the lower mantle. Our results suggest that the lower mantle differs in bulk composition (e.g., richer in iron, Mg#~0.85) from current estimates for the upper mantle, requiring some amount of segregation between the upper and lower mantle over geological history.
机译:为了帮助确定地球地幔的化学成分,我们使用高分辨率的X射线衍射对未耗尽的天然橄榄岩的高压矿物组合进行了表征-认为可以代表地球上地幔-达到107 GPa。在较低的地幔条件下,橄榄岩转变为集合体76(±2)%(Mg_(0.88)Fe_(0.05)〜(2+)Fe_(0.01)〜(3+)Al_(0.12)Si_(0.94)) O_3斜方钙钛矿的体积(在零压力下),17(±2)%(Mg_(0.80)Fe_(0.20))O镁硅钙石和7(±1)%CaSiO_3钙钛矿。测得的这种高压集合体的室温整体性质,连同一系列估计的矿物成分的热性质,似乎与对下地幔的密度和整体模量的地震学约束不一致。我们的研究结果表明,下地幔的块体组成(例如,铁含量较高,Mg#〜0.85)与目前对上地幔的估计不同,因此在地质历史上上,下地幔之间需要一定程度的隔离。

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