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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 >Methane-related diamond crystallization in the Earth's mantle: Stable isotope evidences from a single diamond-bearing xenolith
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Methane-related diamond crystallization in the Earth's mantle: Stable isotope evidences from a single diamond-bearing xenolith

机译:地幔中与甲烷有关的金刚石结晶:来自单个含金刚石异岩的稳定同位素证据

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摘要

Mineralogical studies of deep-seated xenoliths and mineral inclusions in diamonds indicate that there is significant variability in oxygen fugacity within the Earth's upper mantle. This variability is consistent both with the occurrence of reduced (methane-bearing) or oxidized (CO2/carbonate-bearing) fluids. Invariably, direct sampling of reduced deep fluids is not possible as they are unquenchable and re-equilibrate with either the surrounding mantle or are affected by degassing. Key information about the nature of such fluids might be found in diamond if it were possible to study a population related to a single source. Usually, diamonds within a kimberlite pipe have different parageneses and can be shown to have formed at different times and depths.
机译:对钻石中深层异种石和矿物包裹体的矿物学研究表明,地球上地幔中的氧逸度存在显着变化。这种可变性与还原(含甲烷)或氧化(含二氧化碳/碳酸盐)流体的发生是一致的。始终无法对减少的深层流体进行直接采样,因为它们无法淬灭并且无法与周围地幔重新平衡或受到脱气的影响。如果有可能研究与单一来源有关的种群,那么可能会在钻石中找到有关此类流体性质的关键信息。通常,金伯利岩管中的钻石具有不同的同生关系,并且可以显示出它们是在不同的时间和深度形成的。

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