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Hydrous magnesium-rich magma genesis at the top of the lower mantle

机译:下地幔顶部含水富镁岩浆成因

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摘要

Several igneous activities occur on the surface of the Earth, including island arcs, mid-ocean ridges and hot spots. Based on geophysical observations, melting phenomena in the interior also occur at the asthenosphere’s top and the upper mantle’s bottom. Additionally, a seismological low-velocity anomaly was observed at the top of the lower mantle that may result from mantle melting due to dehydration decomposition of ringwoodite to bridgmanite and ferropericlase with a downward flow. However, the corresponding high-pressure experimental data are too poor to understand the melting phenomena under the lower mantle condition. Herein, we conducted hydrous peridotite melting experiments at pressures from 23.5 to 26 GPa and at temperatures from 1300 to 1600 °C for demonstrating the melt composition and the gravitational stability of magma at the top of the lower mantle. The melt had a SiO2-poor and MgO-rich composition, which is completely different than that of dry peridotite melting experiments. Compared with the seismological lower mantle, the experimental melt is gravitationally lighter; thus, a similar melt could be observed as seismological low-velocity zone at the lower mantle’s top. The generated magma plays as a filter of down-welling mantle and can contribute to a formation of a silicate perovskitic lower mantle.
机译:地球表面发生了几种火成活动,包括岛弧,大洋中脊和热点。根据地球物理观测,内部的融化现象也发生在软流圈的顶部和上地幔的底部。此外,在下地幔的顶部观察到地震低速异常,这可能是由于林木石脱水分解为桥锰铁矿和铁镁铝石并向下流动导致地幔融化而导致的。但是,相应的高压实验数据太差,无法理解较低地幔条件下的融化现象。本文中,我们在23.5至26 GPa的压力和1300至1600 C的温度下进行了水合橄榄岩熔融实验,以证明下地幔顶部的熔岩成分和岩浆的重力稳定性。该熔体具有贫SiO2和富MgO的成分,与干橄榄岩熔炼实验的成分完全不同。与地震下地幔相比,实验性熔体在重力作用下更轻。因此,在下地幔顶部的地震低速带可以观察到类似的融化。产生的岩浆起到下陷地幔的过滤作用,并有助于形成硅酸盐钙钛矿质下地幔。

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