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 >The effect of iron and aluminum incorporation on lattice thermal conductivity of bridgmanite at the Earth's lower mantle
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The effect of iron and aluminum incorporation on lattice thermal conductivity of bridgmanite at the Earth's lower mantle

机译:铁和铝掺入对地球下桥梁桥梁晶格导热率的影响

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摘要

Bridgmanite (Bdg), iron (Fe)- and aluminum (Al)-bearing magnesium silicate perovskite is the most abundant mineral in the Earth's lower mantle. Thus, its thermal conductivity governs the lower mantle thermal conductivity that critically controls the thermo-chemical evolution of both the core and the lower mantle. While there is extensive research for the lattice thermal conductivity of MgSiO3 Bdg, the effects of Fe and Al incorporation on its lattice thermal conduction are still controversial. Here we report the lattice thermal conductivity of Mg0.832Fe0.209Al0.060Si0.916O3 Bdg measured up to 142 GPa at 300 K using the pulsed light heating thermoreflectance technique in a diamond anvil cell. The results show that the lattice thermal conductivity of Bdg is 25.5 +/- 2.2 W/m/K at 135 GPa and 300 K, which is 19% lower than that of Fe and Al-free Bdg at identical conditions. Considering the temperature effect on the lattice conductivity and the contribution of radiative thermal conductivity, the total thermal conductivity of Fe and Al-bearing Bdg does not change very much with temperature at 135 GPa, and could be higher than that of post-perovskite with identical chemical composition, (C) 2017 Elsevier B.V. All rights reserved.
机译:Bridgmanite(BDG),铁(Fe) - 和铝(Al) - Bearing镁硅酸盐钙钛矿是地球下部壁炉中最丰富的矿物质。因此,其导热性控制尺寸较低的地幔导热率,尺寸控制芯和下罩的热化学演变。虽然对MGSIO3 BDG​​的晶格导热系数进行了广泛的研究,但是Fe和Al掺入对其晶格热传导的影响仍然存在争议。在这里,我们在金刚石砧座中使用脉冲光加热热反射技术,在300k下测量最多142gPa的晶格导热率。结果表明,BDG的晶格导热率为25.5 +/- 2.2W / m / k,300k,300k,比Fe和Al-A al的Bdg在相同条件下为19%。考虑到晶格导力的温度效应和辐射导热率的贡献,Fe和Al轴承BDG的总导热率在135GPa的温度下不会变化得多,并且可以高于钙钛矿的温度相同化学成分,(c)2017年Elsevier BV保留所有权利。

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