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Os isotopes and highly siderophile elements (HSE) in the Ligurian ophiolites, Italy

机译:意大利利古里亚蛇绿岩中的s同位素和高度亲铁元素(HSE)

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The Os isotopic and highly siderophile element (HSE) concentration systematics of the upper mantle have been the focus of much recent interest. However, little systematic study has addressed the combined HSE and OS isotopes in mantle rocks from MOR ophiolites. The Ligurian ophiolites in northern Italy represent an important class of ophiolites representing, like Zabargad or the Galicia margin, crust with clear ocean ridge affinity floored by older mantle with arguably more continental affinities [Rampone et al., J. Petrol. 36, 18-105, 1995; Rampone et al., Contrib. Mineral. Petrol. 123, 61-67, 1996]. We have studied a suite of 15 geochemically and geologically well characterized mantle peridotites from this ophiolite. The samples have Os isotopic and HSE concentration characteristics in agreement with similar measurements made in abyssal peridotites [Snow and Schmidt, Nature 391, 166-169, 1998]. The observations are consistent with the notion that the depleted mantle shows a HSE signature consistent with the influence of corederived metal. Robust age information could not be obtained for either body, however the data from the External unit are consistent with a Proterozoic melting age similar to the Ronda ultramafic massif. Os-Nd isotopic correlations observed are not, however, consistent with the evolution of variably depleted mantle. Such Os-Nd correlations could be modeled by addition of recycled sediment to depleted mantle, however this disagrees with current notions of the origin of the depleted mantle. Variable ~(187)Os/~(188)Os with essentially constant Al_2O_3 in mantle rocks can be explained by recent remelting of ancient mantle.
机译:上地幔的Os同位素和高度嗜铁元素(HSE)浓度系统是最近引起人们关注的焦点。然而,很少有系统的研究解决MOR蛇绿岩中地幔岩石中HSE和OS同位素的组合问题。意大利北部的利古里亚蛇绿岩代表一类重要的蛇绿岩,如Zabargad或加利西亚边缘,地壳具有明显的海脊亲和力,地幔底部则具有较旧的地幔,可以说具有更多的大陆亲和力[Rampone等,J。Petrol。 1995年第36卷,第18-105页; Rampone等,Contrib。矿物。汽油。 123,61-67,1996]。我们研究了由15种地球化学组成的15个地球化学和地质特征良好的地幔橄榄岩。这些样品的Os同位素和HSE浓度特征与深渊橄榄岩中的类似测量结果一致[Snow and Schmidt,Nature 391,166-169,1998]。这些观察结果与以下观点一致:贫化的地幔显示出HSE签名,该签名与芯衍生金属的影响一致。两种身体都无法获得可靠的年龄信息,但是来自外部单元的数据与元古代融化年龄相一致,类似于隆达超镁铁质断层。然而,观察到的Os-Nd同位素相关性与地幔变耗的演化是不一致的。这种Os-Nd的相关关系可以通过在枯竭的地幔中添加回收的沉积物来模拟,但是这与枯竭地幔的起源的现有观念不同。地幔岩石中具有基本恒定的Al_2O_3的〜(187)Os /〜(188)Os可以通过最近古地幔的重熔来解释。

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