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Silicon isotopes reveal recycled altered oceanic crust in the mantle sources of ocean island basalts

机译:硅同位素揭示了海洋岛玄武岩地幔源中的再生蚀变海洋壳

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摘要

The study of silicon (Si) isotopes in Ocean Island Basalts (OIB) has the potential to discern between different models for the origins of geochemical heterogeneities in the mantle. Relatively large (∼several per mil per atomic mass unit) Si isotope fractionation occurs in low-temperature environments during biochemical and geochemical precipitation of dissolved Si, where the precipitate is preferentially enriched in the lighter isotopes relative to the dissolved Si. In contrast, only a limited range (∼tenths of a per mil) of Si isotope fractionation has been observed from high-temperature igneous processes. Therefore, Si isotopes may be useful as tracers for the presence of crustal material within OIB mantle source regions that experienced relatively low-temperature surface processes in a manner similar to other stable isotope systems, such as oxygen. Characterizing the isotopic composition of the mantle is also of central importance to the use of the Si isotope system as a basis for comparisons with other planetary bodies (e.g., Moon, Mars, asteroids).Here we present the first comprehensive suite of high-precision Si isotope data obtained by MCICPMS for a diverse suite of OIB. Samples originate from ocean islands in the Pacific, Atlantic, and Indian Ocean basins and include representative end-members for the EM-1, EM-2, and HIMU mantle components. On average, δSi values for OIB (−0.32 ± 0.09‰, 2 sd) are in general agreement with previous estimates for the δSi value of Bulk Silicate Earth (−0.29 ± 0.07‰, 2 sd; Savage et al., 2014). Nonetheless, some small systematic variations are present; specifically, most HIMU-type (Mangaia; Cape Verde; La Palma, Canary Islands) and Iceland OIB are enriched in the lighter isotopes of Si (δSi values lower than MORB), consistent with recycled altered oceanic crust and lithospheric mantle in their mantle sources.
机译:对大洋洲玄武岩中硅(Si)同位素的研究有可能辨别地幔中地球化学异质性起源的不同模型。在溶解的Si的生化和地球化学沉淀过程中,低温环境中会发生较大的Si同位素分馏(〜每密耳每原子质量单位有几千个),相对于溶解的Si,该沉淀优先富集于较轻的同位素中。相反,从高温火成过程只能观察到有限的范围(每密耳的十分之几十分之一)的Si同位素分馏。因此,Si同位素可以用作示踪剂,用于以类似于其他稳定同位素系统(例如氧气)的方式经历相对低温表面过程的OIB地幔源区中地壳物质的存在。表征地幔的同位素组成对于使用Si同位素系统作为与其他行星体(例如,月亮,火星,小行星)进行比较的基础也至关重要。在此,我们介绍了第一套全面的高精度通过MCICPMS获得的一系列OIB的Si同位素数据。样品来自太平洋,大西洋和印度洋盆地的海洋岛,并包括EM-1,EM-2和HIMU地幔组分的代表性最终成员。平均而言,OIB的δSi值(-0.32±0.09‰,2 sd)与先前对块状硅酸盐土的δSi值的估计值大致一致(-0.29±0.07‰,2 sd; Savage等人,2014)。尽管如此,还是存在一些小的系统变化。具体而言,大多数HIMU型(Mangaia;佛得角;拉帕尔玛岛,加那利群岛)和冰岛OIB富含Si的轻同位素(δSi值低于MORB),这与地幔源中循环利用的蚀变大洋地壳和岩石圈地幔一致。

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