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A 'high He-4/He-3' mantle material detected under the East Pacific Rise (15 degrees 4 ' N)

机译:在东太平洋上升带(北纬15度4')下发现的一种“高He-4 / He-3”地幔物质

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摘要

We investigate in details helium isotope data reported in Mougel et al. (2014) for 14 basaltic samples collected on the East Pacific Rise by submersible (15 degrees 4N) where the ridge interacts with the Mathematician seamounts. Samples locations are separated by only few hundred meters across a 15km along-axis profile. The data reveal a strong geochemical variability that has never been observed at such high spatial resolution for helium isotope compositions. Moreover, they reveal an unusually high He-4/He-3 mantle component also characterized by unradiogenic lead, atypical in oceanic basalts. He-Pb systematics suggests a mixture between a nonradiogenic lead and radiogenic helium pyroxenitic component, recycled from the deep continental lithosphere and the ambient peridotitic mantle. The He isotope difference between these two end-members can be interpreted as a time evolution of two distinct mantle sources after a slight (U+Th)/He-3 fractionation, likely due to some ancient degassing during the formation of deep continental pyroxenites.
机译:我们详细研究了Mougel等人报道的氦同位素数据。 (2014年)获得了在东太平洋上升带由潜水器(15度4N)收集的14个玄武岩样品的资料,其中山脊与数学家的海山相互作用。在15公里的沿轴剖面上,样品位置仅相隔数百米。数据表明,在如此高的空间分辨率下,氦同位素组成从未发现过强烈的地球化学变化。此外,它们还揭示了异常高的He-4 / He-3地幔成分,其特征还在于非放射性铅,这在海洋玄武岩中是非典型的。 He-Pb系统学研究表明,非放射性铅和放射性氦铁氧体成分是从深大陆岩石圈和周围的橄榄岩地幔中回收的。这两个末端成员之间的He同位素差异可以解释为轻微(U + Th)/ He-3分级分离后两个不同地幔源的时间演化,这可能是由于深部大陆辉石岩形成过程中的某些古代脱气所致。

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