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 >Water partitioning between nominally anhydrous minerals in the MgO-SiO_2-H_2O system up to 24 GPa: implications for the distribution of water in the Earth's mantle
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Water partitioning between nominally anhydrous minerals in the MgO-SiO_2-H_2O system up to 24 GPa: implications for the distribution of water in the Earth's mantle

机译:高达24 GPa的MgO-SiO_2-H_2O系统中名义上无水矿物之间的水分配:对地幔中水分布的影响

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Multi-anvil experiments have been conducted in the MgO-SiO_2-H_2O system at pressures of 15-24 GPa and temperatures of 1200-1600 ℃ to investigate the partitioning of water between mantle phases. The water contents were obtained from Fourier transform infrared spectroscopy on doubly polished and clear crystals. Most of the mineral phases coexisted with a hydrous melt. The results show that among all magnesium silicate phases (1) MgSiO_3-perovskite is the only phase which does not dissolve a detectable amount of water and (2) the high-pressure polymorphs of Mg_2SiO_4 wadsleyite and ringwoodite, dissolve about one order of magnitude more water than the polymorphs of MgSiO_3 (clinoenstatite, majorite and akimotoite). The following partition coefficients of water were measured: D~(wadsleyite/clinoenstatie) = 3.8 at 15 GPa and 1300 ℃, D~(ringwoodite/akimotoite) = 21 at 19 GPa and 1300 ℃, D~(akimotoite/perovskite) 1 at 24 GPa and 1600 ℃, and D~(periclase/perovskite) > 1 at 24 GPa and 1500 ℃. These results suggest that most of the water in the Earth's mantle is partitioned in the transition zone.
机译:在MgO-SiO_2-H_2O系统中,在15-24 GPa的压力和1200-1600℃的温度下进行了多砧实验,研究了地幔相之间水的分配。水分是通过傅立叶变换红外光谱法对双重抛光和澄清的晶体获得的。大多数矿物相与含水熔体共存。结果表明,在所有硅酸镁相中,(1)MgSiO_3-钙钛矿是唯一不溶解可检测量的水的相,(2)Mg_2SiO_4钠钙铝石和菱铁矿的高压多晶型物溶解大约一个数量级。水比MgSiO_3的多晶型物(斜发钙长石,菱铁矿和明矾石)高。测量了以下水的分配系数:在15 GPa和1300℃时,D〜(硅灰石/斜发石)= 3.8;在19 GPa和1300℃时,D〜(硅酸钙石/明矾石)= 21,D〜(裸铁矿/钙钛矿)在24 GPa和1600℃时为1,而D〜(过氧化物酶/钙钛矿)在24 GPa和1500℃时> 1。这些结果表明,地球地幔中的大部分水在过渡区中分配。

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