首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Osmium isotope compositions of detrital Os-rich alloys from the Rhine River provide evidence for a global late Mesoproterozoic mantle depletion event
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Osmium isotope compositions of detrital Os-rich alloys from the Rhine River provide evidence for a global late Mesoproterozoic mantle depletion event

机译:来自莱茵河的碎屑富含Os合金的s同位素组成为全球晚中生代地幔耗尽事件提供了证据

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We report osmium isotopic compositions for 297 mantle-derived detrital Ru-Os-Ir alloy grains found in gold and platinum-group mineral bearing placers of the Rhine River. These alloys were likely formed as a result of high degree melting in the convective mantle and derived from residual Paleozoic mantle peridotites in the Alps of Central Europe that were accreted as part of a collage of Gondwana-derived 'Armorican' terranes before the Variscan Orogeny. The 1870s/1880s isotope ratios of the Os-rich alloys show a wide distribution, with two modes at 0.1244 and 0.1205. These two modes correspond to rhenium depletion ages, interpreted to correspond with episodes of high-degree mantle melting, at 0.5 and similar to 1.1 Ga. The data confirm the ability of the oceanic mantle to preserve evidence of ancient melting events. Our new data, in combination with published data on Os-rich alloys from the Urals and Tasmania and with data for abyssal peridotites, indicate a geographically widespread record of a major global Late Mesoproterozoic (1.0-1.2 Ga) high-degree melting event in Paleozoic oceanic mantle rocks. This model age peak is essentially absent from the crustal record of Central-Western Europe, but does coincide with the apparent peak in global continental crust zircon ages at this time. Thus, high-degree mantle melting peaking in the 1.0-1.2 Ga interval may have affected a large part of Earth's mantle. This interval occurred during a period of relative super-continental stability, which may have been accompanied in the oceanic realm by rapid seafloor spreading and extensive subduction, and by unusually high activity of mantle plumes forming two active mantle superswells. Crown Copyright (C) 2016 Published by Elsevier B.V. All rights reserved.
机译:我们报告了在莱茵河的含金和铂族矿物砂矿中发现的297幔源碎屑Ru-Os-Ir合金晶粒的同位素组成。这些合金很可能是由于对流地幔高度融化而形成的,并且源自中欧阿尔卑斯山的残留古生界地幔橄榄岩,它们是冈瓦纳衍生的“ Armorican”地体在瓦里斯卡造山运动之前的拼贴拼贴的一部分。富含Os的合金的1870s / 1880s同位素比显示出宽分布,在0.1244和0.1205处有两种模式。这两种模式对应于rh的耗尽年龄,被解释为对应于高度地幔融化的事件,在0.5且与1.1 Ga相似。数据证实了海洋地幔具有保存古代融化事件证据的能力。我们的新数据,再加上来自乌拉尔和塔斯马尼亚州的富含Os合金的公开数据,以及深渊橄榄岩的数据,表明在全球范围内,一个重要的全球晚中古生代(1.0-1.2 Ga)高温融化事件发生了广泛的地理记录大洋地幔岩石。该模型年龄峰值基本上没有出现在中西欧的地壳记录中,但确实与此时全球大陆地壳锆石年龄的明显峰值一致。因此,在1.0-1.2 Ga区间内的高度地幔融化峰值可能已经影响了地球的大部分地幔。这个间隔发生在一个相对超大陆稳定的时期,在海洋领域中可能伴随着快速的海底扩散和广泛的俯冲,以及异常活跃的地幔羽形成了两个活跃的地幔超涌。官方版权(C)2016,由Elsevier B.V.保留所有权利。

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