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Degassing-induced fractionation of multiple sulphur isotopes unveils post-Archaean recycled oceanic crust signal in hotspot lava

机译:脱气诱导的多种硫同位素分馏揭示热点熔岩中Archaean循环利用后的地壳信号

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摘要

Mantle source regions feeding hotspot volcanoes likely contain recycled subducted material. Anomalous sulphur (S) isotope signatures in hotspot lavas have tied ancient surface S to this deep geological cycle, but their potential modification by shallow magmatic processes has generally been overlooked. Here we present S isotope measurements in magmatic sulphides, silicate melt inclusions and matrix glasses from the recent eruption of a hotspot volcano at El Hierro, Canary Islands, which show that degassing induces strongly negative δ34S fractionation in both silicate and sulphide melts. Our results reflect the complex interplay among redox conditions, S speciation and degassing. The isotopic fractionation is mass dependent (Δ33S = 0‰), thus lacking evidence for the recycled Archaean crust signal recently identified at other hotspot volcanoes. However, the source has an enriched signature (δ34S ~ + 3‰), which supports the presence of younger 34S-rich recycled oceanic material in the Canary Island mantle plume.
机译:注入热点火山的地幔源区可能含有回收的俯冲物质。热点熔岩中的异常硫(S)同位素特征将古代地表S与这种深部地质循环联系在一起,但通常忽略了它们在浅岩浆作用下的潜在变质作用。在这里,我们介绍了加那利群岛El Hierro的一座热点火山最近喷发而形成的岩浆硫化物,硅酸盐熔体包裹体和基质玻璃中的S同位素测量结果,这些结果表明,脱气会导致强烈的负δ 34 S分馏硅酸盐和硫化物都会熔化。我们的结果反映了氧化还原条件,S形态和脱气之间的复杂相互作用。同位素分馏与质量有关(Δ 33 S = 0‰),因此缺乏最近在其他热点火山中发现的再循环古生地壳信号的证据。但是,该源具有丰富的特征(δ 34 S〜+ 3‰),这支持了加那利岛地幔中存在年轻的 34 S再生海洋物质。羽。

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