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首页> 外文期刊>Chemical geology >The effect of metal composition on Fe-Ni partition behavior between olivine and FeNi-metal, FeNi-carbide, FeNi-sulfide at elevated pressure
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The effect of metal composition on Fe-Ni partition behavior between olivine and FeNi-metal, FeNi-carbide, FeNi-sulfide at elevated pressure

机译:金属组成对高压下橄榄石与FeNi-金属,FeNi-碳化物,FeNi-硫化物之间Fe-Ni分配行为的影响

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摘要

Metal-olivine Fe-Ni exchange distribution coefficients were determined at 1500 degrees C over the pressure range of 1 to 9 GPa for solid and liquid alloy compositions. The metal alloy composition was varied with respect to the Fe/Ni ratio and the amount of dissolved carbon and sulfur. The Fe/Ni ratio of the metal phase exercises an important control on the abundance of Ni in the olivine. The Ni abundance in the olivine decreases as the Fe/Ni ratio of the coexisting metal increases. The presence of carbon (up to similar to 3.5 wt.%) and sulfur (up to similar to 7.5 wt.%) in solution in the liquid Fe-Ni-metal phase has a minor effect on the partitioning of Fe and Ni between metal and olivine phases. No pressure dependence of the Fe-Ni-metal-olivine exchange behavior in carbon- and sulfur-free and carbon- and sulfur-containing systems was found within the investigated pressure range. To match the Ni abundance in terrestrial mantle olivine, assuming an equilibrium metal-olivine distribution, a sub-chondritic Fe/Ni-metal ratio that is a factor of 17 to 27 lower than the FeNi ratios in estimated Earth core compositions would be required, implying higher Fe concentrations in the core forming metal phase. A simple metal-olivine equilibrium distribution does not seem to be feasible to explain the Ni abundances in the Earth's mantle. An equilibrium between metal and olivine does not exercise a control on the problem of Ni overabundance in the Earth's mantle. The experimental results do not contradict the presence of a magma ocean at the time of terrestrial core formation, if olivine was present in only minor amounts at the time of metal segregation. (c) 2005 Elsevier B.V. All rights reserved.
机译:对于固态和液态合金组合物,在1至9 GPa的压力范围内,于1500摄氏度下确定了金属-橄榄石的Fe-Ni交换分布系数。金属合金成分相对于Fe / Ni比以及溶解的碳和硫的量而变化。金属相的Fe / Ni比对橄榄石中Ni的丰度有重要的控制作用。随着共存金属的Fe / Ni比增加,橄榄石中的Ni丰度降低。液态Fe-Ni-金属相中溶液中存在碳(最高至3.5 wt。%)和硫(最高至7.5 wt。%)对金属中Fe和Ni的分配影响很小和橄榄石相。在研究的压力范围内,未发现无碳和无硫以及含碳和硫的体系中Fe-Ni-金属-橄榄石交换行为的压力依赖性。为了与陆地地幔橄榄石中的镍含量相匹配,假设金属-橄榄石分布均衡,则需要亚软骨状Fe / Ni-金属比,比估计的地球核心成分中的FeNi比低17-27倍,这意味着在形成芯的金属相中较高的铁浓度。简单的金属-橄榄石平衡分布似乎不足以解释地幔中的Ni丰度。金属与橄榄石之间的平衡并不能控制地球地幔中镍过量的问题。如果橄榄石在金属分离时仅少量存在,则实验结果与在地核形成时岩浆海洋的存在并不矛盾。 (c)2005 Elsevier B.V.保留所有权利。

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