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Sulfide resorption during crustal ascent and degassing of oceanic plateau basalts

机译:海洋高原玄武岩在地壳上升和脱气过程中的硫化物吸收

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摘要

Mantle plume-related magmas typically have higher chalcophile and siderophile element (CSE) contents than mid-ocean ridge basalts (MORB). These differences are often attributed to sulfide-under-saturation of plume-related melts. However, because of eruption-related degassing of sulfur (S) and the compositional, pressure, temperature and redox effects on S-solubility, understanding the magmatic behavior of S is challenging. Using CSE data for oceanic plateau basalts (OPB), which rarely degas S, we show that many OPB are sulfide-saturated. Differences in the timing of sulfide-saturation between individual OPB suites can be explained by pressure effects on sulfur solubility associated with ascent through over-thickened crust. Importantly, where S-degassing does occur, OPB have higher CSE contents than S-undegassed melts at similar stages of differentiation. This can be explained by resorption of earlier-formed sulfides, which might play an important role in enriching degassed melts in sulfide-compatible CSE and potentially contributes to anomalous enrichments of CSE in the crust.
机译:与地幔羽相关的岩浆通常具有比中洋脊玄武岩(MORB)高的嗜酸性和嗜铁元素(CSE)含量。这些差异通常归因于羽流相关熔体的硫化物欠饱和。然而,由于与喷发有关的硫(S)脱气以及组成,压力,温度和氧化还原对S溶解度的影响,了解S的岩浆行为具有挑战性。使用很少对S脱气的海洋高原玄武岩(OPB)的CSE数据,我们显示许多OPB都被硫化物饱和。各个OPB套件之间硫化物饱和时间的差异可以通过对压力的影响来解释,即硫对溶解度的影响与通过超厚地壳的上升有关。重要的是,在确实发生脱气的情况下,OPB的CSE含量要高于在类似分化阶段的无S脱气熔体。这可以通过吸收较早形成的硫化物来解释,硫化物可能在与硫化物相容的CSE中富集脱气熔体中起重要作用,并可能导致地壳中CSE异常富集。

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