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Circa 1 Ga sub-seafloor hydrothermal alteration imprinted on the Horoman peridotite massif

机译:Horoman橄榄岩块体上印有大约1 Ga海底热液蚀变

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摘要

The chemical compositions of the residues of the mantle melting that produces mid-ocean ridge basalt can be altered by fluid–rock interactions at spreading ridges and, possibly, during seawater penetration along bending-related faults in plates approaching trenches. This chemically modified rock, if subducted deeply and after long-term residence within the deep Earth, is a potential source of chemical heterogeneity in the mantle. Here, we demonstrate that peridotites from the Horoman massif preserve the chemical signatures of sub-seafloor hydrothermal (SSH) alteration at a mid-ocean ridge approximately one billion years ago. These rocks have evolved chemically subsequent to this SSH alteration; however, they retain the SSH-associated enrichments in fluid mobile elements and H2O despite their long-term residence within the mantle. Our results indicate that ancient SSH alteration resulting in the production of sulfide leads to Pb enrichment that could affect the present-day Pb isotopic evolution of the silicate earth. Evidence from the Horoman massif of the recycling of hydrous refractory domains into the mantle suggests that both the flux of H2O content into the mantle and the size of the mantle H2O reservoir are higher than have been estimated recently.
机译:产生洋中脊玄武岩的地幔融化残余物的化学成分可以通过扩宽脊上的流体-岩石相互作用而改变,并且有可能在海水沿接近沟槽的板中沿弯曲相关断层渗透时发生改变。这种经过化学修饰的岩石,如果深部俯冲并在深层地球中长期停留之后,是地幔中化学异质性的潜在来源。在这里,我们证明了来自Horoman断层的橄榄岩在大约十亿年前的中海脊保留了海底热液(SSH)蚀变的化学特征。这些岩石是在SSH更改之后化学演化的;然而,尽管它们长期存在于地幔中,但它们仍保留了与SSH相关的流体可移动元素和H2O富集。我们的结果表明,古老的SSH改变导致硫化物的产生导致Pb富集,这可能影响当今硅酸盐地球的Pb同位素演化。来自Horoman断层的水硬质难熔区域再循环到地幔中的证据表明,进入地幔的H2O含量通量和地幔H2O储层的大小均高于最近的估计。

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