首页> 外文期刊>Chemical geology >Whole-rock geochemistry of gabbros from the Southwest Indian Ridge: constraints on geochemical fractionations between the upper and lower oceanic crust and magma chamber processes at (very) slow-spreading ridges
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Whole-rock geochemistry of gabbros from the Southwest Indian Ridge: constraints on geochemical fractionations between the upper and lower oceanic crust and magma chamber processes at (very) slow-spreading ridges

机译:西南印第安海岭辉长岩的整个岩石地球化学:上,下洋壳和(非常)缓慢扩散脊的岩浆腔过程对地球化学分馏的限制

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摘要

Whole-rock major and trace element compositions are presented for a suite of gabbroic samples formed at the Southwest Indian Ridge with the aim of constraining magmatic processes at ultra slow-spreading centres. The gabbros, together with subordinate basalts, dolerites and peridotites were collected from a similar to 700 km(2) area around Atlantis Bank, adjacent to the Atlantis II Fracture Zone during cruise JR31 of the RRS James Clark Ross. The large area sampled, the abundance of gabbro, and the recovery of samples representative of all other levels in the oceanic lithosphere, allow an average lower crustal composition to be estimated. The estimated composition is not sufficiently primitive in terms of Mg/Fe or compatible trace element abundances (Ni, Cr) for the bulk crust to be in equilibrium with the mantle. This is probably due to compositional modifications within the mantle during melt extraction, although crystallisation within the crust in an unsampled area, either towards the segment centre or along a flow line, cannot be ruled out. Gabbro compositions show evidence for being mixtures of cumulate crystals and significant proportions of basalt, with the proportion of each end-member dependent on the distribution coefficient of the element in question. This suggests that the concept of 'trapped melt' cannot be used to understand the origin of these compositions and consideration of the mi ration of interstitial liquid within a crystal mush is necessary. The fractionation of incompatible elements between the upper and lower crust correlates with the observed degree of variation in trace element concentrations in basalts from the same spreading segment. This suggests that interstitial liquids are, in part, extracted from the crystal mush and mixed. back into subsequently erupted basalts leading to their compositional modification. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 60]
机译:介绍了西南印第安岭形成的一组辉长岩样品的全岩石主要元素和微量元素组成,目的是限制超慢扩散中心的岩浆作用。在RRS詹姆斯·克拉克·罗斯(James Clark Ross Ross)的JR31巡游期间,从附属于亚特兰蒂斯二号破碎带的亚特兰蒂斯银行周围约700 km(2)的区域收集了辉长岩以及其下属的玄武岩,云母和橄榄石。大面积采样,辉长岩的丰富度以及代表海洋岩石圈所有其他水平的样品的回收,都可以估算出平均较低的地壳成分。对于大块地壳要与地幔保持平衡而言,就Mg / Fe或相容的痕量元素丰度(Ni,Cr)而言,估计的组成还不够原始。这可能是由于熔体抽出过程中地幔内部的成分变化所致,尽管不能排除未采样区域中的壳内部结晶的结晶,无论是朝向段中心还是沿流线。 Gabbro组合物显示出是累积晶体和大量玄武岩的混合物的证据,每个端基的比例取决于所涉及元素的分布系数。这表明不能使用“捕获的熔体”的概念来理解这些成分的起源,必须考虑晶体糊状物中间隙液体的迁移。上地壳和下地壳之间不相容元素的分馏与观察到的来自同一扩展段的玄武岩中痕量元素浓度的变化程度有关。这表明间隙性液体部分地从晶体糊状物中提取并混合。返回到随后喷出的玄武岩中,导致其成分发生变化。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:60]

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