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No significant boron in the hydrated mantle of most subducting slabs

机译:大多数俯冲板的水合地幔中没有明显的硼

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摘要

Boron has become the principle proxy for the release of seawater-derived fluids into arc volcanics, linked to cross-arc variations in boron content and isotopic ratio. Because all ocean floor serpentinites so far analysed are strongly enriched in boron, it is generally assumed that if the uppermost slab mantle is hydrated, it will also be enriched in boron. Here we present the first measurements of boron and boron isotopes in fast-spread oceanic gabbros in the Pacific, showing strong take-up of seawater-derived boron during alteration. We show that in one-pass hydration of the upper mantle, as proposed for bend fault serpentinisation, boron will not reach the hydrated slab mantle. Only prolonged hydrothermal circulation, for example in a long-lived transform fault, can add significant boron to the slab mantle. We conclude that hydrated mantle in subducting slabs will only rarely contribute to boron enrichment in arc volcanics, or to deep mantle recycling.
机译:硼已成为将海水中的流体释放到弧火山中的主要代表,与硼含量和同位素比的跨弧变化有关。由于到目前为止分析的所有海底蛇纹岩都富含硼,因此通常认为,如果最上层的板幔被水化,那么其也会富含硼。在这里,我们介绍了太平洋快速传播的长辉长角中硼和硼同位素的首次测量结果,表明在蚀变过程中大量吸收了海水衍生的硼。我们表明,在上地幔的一遍水合中,如为弯曲断裂蛇形化所提议的,硼将不会到达水合的板状地幔。只有延长的热液循环,例如在长寿命的转换断层中,才能向板幔中添加大量的硼。我们得出的结论是,俯冲平板中的水合地幔极少会促进弧火山岩中的硼富集或深地幔的再循环。

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