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Zinc isotope evidence for sulfate-rich fluid transfer across subduction zones

机译:锌同位素证明了富硫酸盐流体在俯冲带之间的转移

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摘要

Subduction zones modulate the chemical evolution of the Earth's mantle. Water and volatile elements in the slab are released as fluids into the mantle wedge and this process is widely considered to result in the oxidation of the sub-arc mantle. However, the chemical composition and speciation of these fluids, which is critical for the mobility of economically important elements, remain poorly constrained. Sulfur has the potential to act both as oxidizing agent and transport medium. Here we use zinc stable isotopes (δ66Zn) in subducted Alpine serpentinites to decipher the chemical properties of slab-derived fluids. We show that the progressive decrease in δ66Zn with metamorphic grade is correlated with a decrease in sulfur content. As existing theoretical work predicts that Zn-SO42− complexes preferentially incorporate heavy δ66Zn, our results provide strong evidence for the release of oxidized, sulfate-rich, slab serpentinite-derived fluids to the mantle wedge.
机译:俯冲带调节着地球地幔的化学演化。板中的水和挥发性元素作为流体释放到地幔楔中,这一过程被广泛认为会导致亚弧地幔的氧化。但是,这些流体的化学组成和形态对于经济上重要的元素的流动性至关重要,但其约束仍然很有限。硫具有充当氧化剂和传输介质的潜力。在这里,我们在俯冲的高山蛇纹岩中使用锌稳定同位素(δ 66 Zn)来解释板坯衍生流体的化学性质。结果表明,随着变质等级的逐渐降低,δ 66 Zn与硫含量的下降有关。正如现有的理论工作预测的那样,Zn-SO4 2 − 络合物优先掺入重质δ 66 Zn,我们的结果为释放氧化的,富含硫酸盐的平板蛇纹石提供了有力的证据到地幔楔的流体。

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