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首页> 外文期刊>International Geology Review >Mineralogy, geochemistry, and geotectonic significance of the Neoproterozoic ophiolite of Wadi Arais area, south Eastern Desert, Egypt
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Mineralogy, geochemistry, and geotectonic significance of the Neoproterozoic ophiolite of Wadi Arais area, south Eastern Desert, Egypt

机译:埃及东南沙漠瓦迪阿拉伊斯地区新元古代蛇绿岩的矿物学,地球化学和大地构造意义

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摘要

The dismembered ophiolites in Wadi Arais area of the south Eastern Desert of Egypt are one of a series of Neoproterozoic ophiolites found within the Arabian-Nubian Shield (ANS). We present new major, trace, and rare earth element analyses and mineral composition data from samples of the Wadi Arais ophiolitic rocks with the goal of constraining their geotectonic setting. The suite includes serpentinized ultramafics (mantle section) and greenschist facies metagabbros (crustal section). The major and trace element characteristics of the metagabbro unit show a tholeiitic to calc-alkaline affinity. The serpentinized ultramafics display a bastite, or less commonly mesh, texture of serpentine minerals reflecting harzburgite and dunite protoliths, and unaltered relics of olivine, orthopyroxene, clinopyroxene, and chrome spinel can be found. Bulk-rock chemistry confirms harzburgite as the main protolith. The high Mg# (91.93-93.15) and low Al2O3/SiO2 ratios (0.01-0.02) of the serpentinized peridotite, together with the high Cr# (>0.6) of their Cr-spinels and the high NiO contents (0.39-0.49wt.%) of their olivines, are consistent with residual mantle rocks that experienced high degrees of partial melt extraction. The high Cr# and low TiO2 contents (0.02-0.34wt.%) of the Cr-spinels are most consistent with modern highly refractory fore-arc peridtotites and suggest that these rocks probably developed in a supra-subduction zone environment.
机译:埃及东南沙漠瓦迪阿拉伊斯(Wadi Arais)地区肢解的蛇绿岩是在阿拉伯-努比亚盾(ANS)内发现的一系列新元古代蛇绿岩之一。我们提供了Wadi Arais蛇纹岩岩石样品的新的主要,痕量和稀土元素分析和矿物成分数据,目的是限制其大地构造环境。该套件包括蛇形超镁铁质岩层(地幔部分)和绿岩相变质(地壳部分)。异代谢物单元的主要和微量元素特征显示出对钙-碱性的亲和力。蛇纹石化的超镁铁矿表现出一种辉石状或更少见的网状蛇纹石矿物质感,反映出哈兹伯格石和榴辉岩的原石,并且可以发现橄榄石,邻苯二甲酚,斜铁石和铬尖晶石的遗迹未变。块岩化学证实了钙长石是主要的原生石。蛇纹化橄榄岩的Mg#高(91.93-93.15)和Al2O3 / SiO2比低(0.01-0.02)以及Cr-尖晶石的Cr#高(> 0.6)和高的NiO含量(0.39-0.49wt %的橄榄石与经历了高度部分熔体提取的残留地幔岩石一致。 Cr-尖晶石的高Cr#和低TiO2含量(0.02-0.34wt。%)与现代高耐火度前弧形橄榄石最一致,表明这些岩石可能在超俯冲带环境中发育。

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