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K isotopes as a tracer of seafloor hydrothermal alteration

机译:钾同位素作为海底热液蚀变的示踪剂

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摘要

At ocean spreading ridges, circulation of seawater through rock at elevated temperatures alters the chemical and isotopic composition of oceanic crust. Samples obtained from drilling into ocean floor and from ophiolites have demonstrated that certain isotope systems, such as 18O/16O and 87Sr/86Sr, are systematically modified in hydrothermally altered oceanic crust. Although K is known to be mobile during hydrothermal alteration, there have not yet been any K-isotope analyses of altered oceanic crustal materials. Moreover, the 41K/39K of seawater was recently found to be significantly higher than that of igneous rocks, so the addition of seawater K to oceanic crust would be expected to generate 41K/39K variations in affected rocks. Here, we report high-precision 41K/39K measurements for samples from the Bay of Islands ophiolite, and we document large variations in 41K/39K, covarying with previous determinations of 87Sr/86Sr. Our data indicate that analytically resolvable 41K/39K effects arise in oceanic crust as a result of hydrothermal alteration. This finding raises the possibility that 41K/39K can be used as an effective tracer of oceanic crust recycled into the mantle, as a diagnostic criterion by which to identify ancient fragments of oceanic crust, and as a constraint on the flux of K between oceanic crust and seawater.
机译:在海洋扩散的山脊上,海水在高温下通过岩石的循环会改变大洋地壳的化学和同位素组成。从海底和蛇绿岩中钻取的样品表明,某些同位素系统,例如 18 O / 16 O和 87 Sr / < sup> 86 Sr在水热蚀变的洋壳中被系统地修饰。尽管已知K在热液蚀变过程中是可移动的,但尚未对变化的海洋地壳物质进行任何K同位素分析。此外,最近发现海水的 41 K / 39 K明显高于火成岩,因此,将海水K添加到大洋地壳中有望在受影响的岩石中产生 41 K / 39 K变化。在这里,我们报告了来自岛屿湾蛇绿岩的样品的高精度 41 K / 39 K测量,并且我们记录了 41 的较大变化K / 39 K,与以前确定的 87 Sr / 86 Sr的变化不同。我们的数据表明,由于热液蚀变,大洋地壳中出现了解析可解析的 41 K / 39 K效应。这一发现增加了 41 K / 39 K可以用作有效地追溯到地幔中的洋壳的示踪剂的可能性,以此作为诊断古代碎片的诊断标准地壳的变化,并限制了地壳和海水之间的钾通量。

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