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Stability of magnesiowuestite in Earth's lower mantle

机译:地球下地幔中镁铝辉石的稳定性

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Magnesiowuestite [(Mg.Fe)O] is the second most abundant mineral of Earth's lower mantle. Understanding its stability under lower mantle conditions is crucial for interpreting the physical and chemical properties of the whole Earth. Previous studies in an externally heated diamond anvil cell suggested that magnesio-wuestites decompose into two components, Fe-rich and Mg-rich magnesiowuestites at 86 GPa and 1,000 K. Here we report an in situ study of two magnesiowiistites E(Mg_(0.39),Fe_(0.61))O and (Mg_(0.25),Fe_(0.75)O] at pressures and temperatures that overlap with mantle conditions, using a laser-heated diamond anvil cell combined with synchrotron x-ray diffraction. Our results show that addition of Mg in wuestite (FeO) can stabilize the rock-salt structure to much higher pressures and temperatures. In contrast to the previous studies, our results indicate that Mg-rich magnesiowiistite is stable in the rock-salt structure in the lower mantle. The physical and chemical properties of magnesiowiistite should change gradually and continuously in the lower mantle, suggesting that it does not make a significant contribution to seismic-wave heterogeneity of the lower mantle. Stable Mg-rich magnesiowuestite in lowermost mantle can destabilize FeO in the core-mantle boundary region and remove FeO from the outer core.
机译:镁铁辉石[(Mg.Fe)O]是地球下地幔中含量第二高的矿物。了解其在较低地幔条件下的稳定性对于解释整个地球的物理和化学特性至关重要。先前在外部加热的金刚石砧室中进行的研究表明,镁铁-辉石在86 GPa和1,000 K时分解为富铁和富镁的镁铁辉石两个成分。在这里,我们报告了两种镁铁锰铁矿E(Mg_(0.39) Fe-(0.61))O和(Mg_(0.25),Fe_(0.75)O]在压力和温度与地幔条件重叠的情况下,采用激光加热的金刚石砧盒与同步加速器X射线衍射相结合,我们的结果表明:在钙铁矿(FeO)中添加Mg可将岩盐结构稳定在更高的压力和温度下,与先前的研究相反,我们的结果表明,富含Mg的镁硅锰铁矿在下部地幔的岩盐结构中是稳定的。下地幔中镁镁辉石的理化性质应逐渐,连续变化,表明它对下地幔的地震波非均质性无明显贡献。 st幔会破坏芯幔边界区域中的FeO并从外核中去除FeO。

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