首页> 外文期刊>The American mineralogist >High-pressure high-temperature transitions in MgCr2O4 and crystal structures of new Mg2Cr2O5 and post-spinel MgCr2O4 phases with implications for ultrahigh-pressure chromitites in ophiolites
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High-pressure high-temperature transitions in MgCr2O4 and crystal structures of new Mg2Cr2O5 and post-spinel MgCr2O4 phases with implications for ultrahigh-pressure chromitites in ophiolites

机译:MgCr2O4中的高压高温转变以及新的Mg2Cr2O5和尖晶石后MgCr2O4相的晶体结构,对蛇绿岩中的超高压铬铁矿有影响

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摘要

We determined phase relations in MgCr2O4 at 12-28 GPa and 1000-1600 degrees C using a multi-anvil apparatus. At 12-15 GPa, spinel-type MgCr2O4 (magnesiochromite) first decomposes into a mixture of new Mg2Cr2O5 phase + corundum-type Cr2O3 at 1100-1600 degrees C, but it dissociates first into MgO periclase + corundum-type Cr2O3 at 1000 degrees C. At about 17-19 GPa, the mixture of Mg2Cr2O5 phase + corundum-type Cr2O3 transforms to a single MgCr2O4 phase. Structure refinements using synchrotron X-ray powder diffraction data indicated that the high-pressure MgCr2O4 phase has a CaTi2O4-type structure (Cmcm), and that the basic structure of the Mg2Cr2O5 phase is the same as that of recently found modified ludwigite-type Mg2Al2O5 and Fe2Cr2O5 (Pbam). The phase relations in this study may suggest that natural chromitites in the Luobusa ophiolite regarded as the deep-mantle origin were derived from the mantle shallower than the depths corresponding to pressure of 12-15 GPa because of absence of the assemblage of (Mg,Fe)(2)Cr2O5 + Cr2O3 in the chromitites.
机译:我们使用多砧装置在12-28 GPa和1000-1600摄氏度下确定了MgCr2O4中的相关系。在12-15 GPa时,尖晶石型MgCr2O4(镁铬铁矿)首先在1100-1600℃分解成新的Mg2Cr2O5相+刚玉型Cr2O3的混合物,但首先在1000℃分解成MgO镁长石+刚玉型Cr2O3。在约17-19 GPa时,Mg2Cr2O5相+刚玉型Cr2O3的混合物转变为单一MgCr2O4相。使用同步加速器X射线粉末衍射数据进行的结构细化表明,高压MgCr2O4相具有CaTi2O4型结构(Cmcm),并且Mg2Cr2O5相的基本结构与最近发现的改性路德维希型Mg2Al2O5相同。和Fe2Cr2O5(Pbam)。本研究中的相位关系可能表明,由于没有(Mg,Fe的组合),被认为是深地幔起源的罗布萨蛇绿岩中的天然铬铁矿是从比对应于压力12-15 GPa的深度浅的地幔中获得的。铬铁矿中的(2)Cr2O5 + Cr2O3。

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