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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 >Experimental determination of carbon isotope fractionation between graphite and carbonated silicate melt under upper mantle conditions
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Experimental determination of carbon isotope fractionation between graphite and carbonated silicate melt under upper mantle conditions

机译:上地幔条件下石墨与碳酸盐硅酸盐熔体之间碳同位素分馏的实验测定

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Carbon isotope fractionation between graphite and carbonated silicate melt was determined at 5 GPa and in the temperature range between 1400 and 1900 °C. High pressure experiments were carried out in the carbon-saturated model harzbergite system (Enstatite-Magnesite-Olivine-Graphite), where carbonated silicate melt and graphite were the two stable carbon-bearing phases in the run products. Carbonated silicate melting resulted in an isotopic fractionation between graphite and carbon in the silicate melt, where the carbon in the melt is ~(13)C enriched than co-existing graphite. ~(13)C enrichment in carbonate melt when compared to graphite was further confirmed in experiments where redox melting between olivine and graphite produced carbonate melt as well as carbonate reduction experiments to form graphite. Although a quantitative estimate of fractionation between carbonate melt and graphite could not be obtained, our results indicate that mantle melting in the presence of graphite can result in progressive ~(13)C carbon isotope enrichment in carbonate melt and depletion in graphite, which can be an alternate explanation for the carbon isotopic heterogeneity observed in the mantle derived carbon.
机译:在5 GPa和1400至1900°C的温度范围内测定了石墨与碳酸硅酸盐熔体之间的碳同位素分馏。在碳饱和模型Harzbergite系统(Enstatite-Magnesite-Olivine-Graphite)中进行了高压实验,其中碳酸硅酸盐熔体和石墨是运行产品中两个稳定的含碳相。碳酸硅酸盐的熔融导致石墨与硅酸盐熔体中的碳之间的同位素分馏,其中熔体中的碳比共存的石墨富含〜(13)C。与橄榄石相比,在橄榄石和石墨之间的氧化还原熔融产生碳酸盐熔体的碳酸盐还原实验以及形成石墨的实验中,进一步证实了碳酸盐熔体中〜(13)C富集。尽管无法获得碳酸盐熔体和石墨之间分馏的定量估算,但我们的结果表明,在存在石墨的情况下地幔熔融会导致碳酸盐熔体中逐步的〜(13)C碳同位素富集和石墨中的贫化,这可能是地幔衍生碳中碳同位素异质性的另一种解释。

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