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The role of subduction recycling on the selenium isotope signature of the mantle: Constraints from Mariana arc lavas

机译:俯冲回收对地幔硒同位素签名的作用:Mariana Arc VALAS的限制

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Investigating the isotope systematics and behavior of selenium in subduction zones provides valuable insights into mechanisms that contribute to chalcophile and moderately volatile element distribution between terrestrial reservoirs. In this study, we present high-precision Se isotope and Se-Te elemental data on subduction zone lavas from the Mariana arc system. Our results indicate that Se-Te concentrations are unaffected by submarine degassing but are affected by magmatic differentiation. In contrast, Se isotopes of submarine lavas are unaffected by both magmatic differentiation and degassing and thus may preserve their magmatic source signature. Compared to the average Se isotope composition previously obtained for mantle-derived samples (delta Se-82/76 = 0.23 +/- 0.12 parts per thousand, 2 s.d., n = 5), suitable to represent the Mariana pre-subduction wedge, Mariana lavas show a larger overall range (delta Se-82/76 from 0.03 to -0.33 parts per thousand, n = 21) with a clear tendency towards lighter Se isotope compositions. The variable Se isotope signatures within the Mariana suite can further be attributed to different slab-derived fluid and melt-like subduction components. This provides evidence for a significant role of subduction recycling of hydrothermal sulfide-containing altered oceanic crust and pelagic sediments with possible implications for the Se isotope evolution of the crust-mantle system throughout geological time.
机译:调查在俯冲区域中硒的同位素系统和行为提供了有价值的见解,该洞察力有助于陆地水库之间有助于碳水化合物和中等波动元素分布的机制。在这项研究中,我们在Mariana Arc系统中展示了高精度SE同位素和SE-TE元素数据。我们的结果表明,SE-TE浓度不受潜艇脱气的影响,但受到岩浆分化的影响。相比之下,潜水艇的SE同位素不受岩浆分化和脱气的影响,因此可以保持其岩浆源签名。与先前用于搭式样品的平均SE同位素组合物相比(Delta Se-82/76 = 0.23 +/- 0.12份,2 SD,N = 5),适用于Mariana预俯冲楔,Mariana熔岩显示出更大的整体范围(ΔEe-82/76,从0.03至-0.33份,n = 21),呈较轻的SE同位素组合物倾向。 Mariana套件内的变量SE同位素签名可以归因于不同的平板衍生的流体和熔体状俯冲组件。这提供了潜水热硫化物改变的海洋地壳和脑沉积物的显着作用的证据,以在整个地质时间内对Crust-Mantle系统的SE同位素演化的可能影响。

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