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Molybdenum systematics of subducted crust record reactive fluid flow from underlying slab serpentine dehydration

机译:俯冲地壳的钼系统记录下板状蛇形脱水的反应流体流量

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摘要

Fluids liberated from subducting slabs are critical in global geochemical cycles. We investigate the behaviour of Mo during slab dehydration using two suites of exhumed fragments of subducted, oceanic lithosphere. Our samples display a positive correlation of δ98/95MoNIST 3134 with Mo/Ce, from compositions close to typical mantle (−0.2‰ and 0.03, respectively) to very low values of both δ98/95MoNIST 3134 (−1‰) and Mo/Ce (0.002). Together with new, experimental data, we show that molybdenum isotopic fractionation is driven by preference of heavier Mo isotopes for a fluid phase over rutile, the dominant mineral host of Mo in eclogites. Moreover, the strongly perturbed δ98/95MoNIST 3134 and Mo/Ce of our samples requires that they experienced a large flux of oxidised fluid. This is consistent with channelised, reactive fluid flow through the subducted crust, following dehydration of the underlying, serpentinised slab mantle. The high δ98/95MoNIST 3134 of some arc lavas is the complement to this process.
机译:从俯冲板释放的流体在全球地球化学循环中至关重要。我们使用两套俯冲的海洋岩石圈出土碎片研究了平板脱水过程中钼的行为。我们的样品显示出δ 98/95 MoNIST 3134与Mo / Ce呈正相关,从接近典型地幔的成分(分别为-0.2‰和0.03)到两个δ的极低值98/95 MoNIST 3134(-1‰)和Mo / Ce(0.002)。连同新的实验数据,我们表明,钼的同位素分馏是由相对于金红石(在榴辉岩中占主导地位的Mo矿物)的金红石优先选择较重的Mo同位素来驱动的。此外,我们样品的δ 98/95 MoNIST 3134和Mo / Ce受强烈扰动要求它们经历大流量的氧化流体。这与底层蛇形板状地幔脱水后流过俯冲地壳的通道化反应性流体一致。某些弧熔岩的高δ 98/95 MoNIST 3134可以补充此过程。

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