埃及东南部沙漠Wadi Kalalat地区新元古代蛇纹岩和listwaenites特征与演化的矿物、地球化学和ASD反射光谱综合

IF 2.6 3区 地球科学 Q2 GEOCHEMISTRY & GEOPHYSICS
Adel A. Surour , Ahmed A. Madani , Mohamed A. El Sobky
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引用次数: 0

摘要

本研究主要应用ASD FeldSpec结合主成分分析(PCA)和融合色复合(FCC)等遥感技术,对埃及Wadi Kalalat地区新元古代盾构岩进行区分。此外,利用地球化学特征,更好地了解该区蛇绿蛇纹岩作为最古老的岩石单元的地球动力学演化。此外,本研究还在埃及东部沙漠的一个新地点记录了两种类型的listwaenite(钙和硅)。蛇绿蛇纹岩±listwaenites以及岛弧变辉长岩闪长岩杂岩在Wadi Kalalat主干两侧发育,而与弧相关的新鲜橄榄岩和Gabal El-Motaghairat侵入岩的橄榄辉长岩在Wadi北侧发育。在矿物学上,部分蛇纹石化的橄榄岩遗迹含有铁辉长辉石(FeO为12.49 wt%, MgO为28.6 wt%)、透辉石、绿色透明尖晶石(pleonate)和铬尖晶石。铬尖晶石的化学性质表明其成分为一种新颖的皮橄榄石(MgO重量百分比为4.34 ~ 9.88,Al2O3重量百分比为17.87 ~ 19,FeO重量百分比为42.48 ~ 44.14,Cr2O3重量百分比为23.16 ~ 26.07)。细磁铁矿的痕迹形成于温石棉细脉的岩心,同时形成网状结构的块状蛇纹岩。在绿片岩上—角闪岩下蛇纹石化条件下,粗磁铁矿浸染和cr -磁铁矿作为带状cr尖晶石的外围缘与反长辉长岩形成有关。在0.45 ~ 2.5 μm范围内,结合主成分分析(PCA)和FCC分析结果,可以将该区蛇纹岩及其相关链长岩与其他岩石单元区分出来,并能很好地区分El-Motaghairat基性-超基性弧侵入与岛弧岩和Batuga花岗岩岩体。磁铁矿含量、蛇纹石矿物学、金属- oh、Mg2+、Fe2+、Fe3+含量以及橄榄石、斜辉石等新鲜物相是反射光谱岩性鉴别的控制因素。从地球动力学的角度出发,根据Wadi Kalalat蛇纹岩中SiO2、Al2O3、MgO、CaO和LILEs的含量,地幔橄榄岩位于洋中脊(MOR)环境中,而不是位于超俯冲带(SSZ)环境中。我们的研究结果指出,石钨化是一个热液过程,导致过渡金属(Cr, Ni, V, Co)从蛇纹石前驱体中急剧耗散。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Integration of mineralogical, geochemical and ASD reflectance spectra data for characterization and evolution of Neoproterozoic serpentinites and listwaenites at Wadi Kalalat area, South Eastern Desert of Egypt

Integration of mineralogical, geochemical and ASD reflectance spectra data for characterization and evolution of Neoproterozoic serpentinites and listwaenites at Wadi Kalalat area, South Eastern Desert of Egypt
The present research focuses on the application some remote sensing techniques, mostly ASD FeldSpec combined with principal component analysis (PCA) and fusion color composite (FCC), to discriminate different Neoproterozoic shield rocks at the Wadi Kalalat area, Egypt. In addition, geochemical characteristics are utilized for better understanding of geodynamic evolution of ophiolitic serpentinites in the area as the oldest rock unit. Also, the present research records two varieties of listwaenite (calcic and silicic) at a new locality in the Eastern Desert of Egypt. The ophiolitic serpentinites ± listwaenites, as well as the island-arc metagabbro-diorite complex, crop out at both flanks of the Wadi Kalalat main course while the arc-related fresh peridotite and olivine gabbro of the Gabal El-Motaghairat intrusion crop out at the northern flank of the wadi. Mineralogically, partially serpentinized peridotite relics contain ferroenstatite (12.49 wt% FeO, 28.6 wt% MgO), diopside, green transparent spinel (pleonsate) and Cr-spinel. Chemistry of Cr-spinel indicates freshness of a picotite composition (4.34–9.88 wt% MgO, 17.87–19 wt% Al2O3, 42.48–44.14 wt% FeO, 23.16–26.07 wt% Cr2O3). Trails of fine magnetite form at cores of chrysotile veinlets contemporaneous with the formation of mesh-textured massive serpentinite. Coarse magnetite disseminations and Cr-magnetite as the peripheral rim of zoned Cr-spinel are connected to antigorite formation at upper greenschist-lower amphibolite serpentinization condition. Feldspec reflectance bands in the range 0.45–2.5 μm, combined with results from PCA and FCC, discriminate serpentinites and their related listwaenites from other rock units in the area, and with perfect discrimination of El-Motaghairat mafic-ultramafic arc intrusion from the island arc rocks and the Batuga granite pluton. Magnetite content, serpentine mineralogy, contents of metal-OH, Mg2+, Fe2+, Fe3+, in addition to fresh phases such as olivine and clinopyroxene are the controlling factors for the lithological discrimination on the basis of reflectance spectroscopy. From the geodynamic point of view, and based on contents of SiO2, Al2O3, MgO, CaO and LILEs in the Wadi Kalalat serpentinites, the mantle peridotite was emplaced as a depleted wedge in a mid-ocean ridge (MOR) setting rather than in a supra-subduction zone (SSZ) setting. Our findings point out to the fact that listwaenitization is a hydrothermal process that lead to drastic depletion of transitional metals (Cr, Ni, V, Co) from the serpentinite precursor.
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来源期刊
Chemie Der Erde-Geochemistry
Chemie Der Erde-Geochemistry 地学-地球化学与地球物理
CiteScore
7.10
自引率
0.00%
发文量
40
审稿时长
3.0 months
期刊介绍: GEOCHEMISTRY was founded as Chemie der Erde 1914 in Jena, and, hence, is one of the oldest journals for geochemistry-related topics. GEOCHEMISTRY (formerly Chemie der Erde / Geochemistry) publishes original research papers, short communications, reviews of selected topics, and high-class invited review articles addressed at broad geosciences audience. Publications dealing with interdisciplinary questions are particularly welcome. Young scientists are especially encouraged to submit their work. Contributions will be published exclusively in English. The journal, through very personalized consultation and its worldwide distribution, offers entry into the world of international scientific communication, and promotes interdisciplinary discussion on chemical problems in a broad spectrum of geosciences. The following topics are covered by the expertise of the members of the editorial board (see below): -cosmochemistry, meteoritics- igneous, metamorphic, and sedimentary petrology- volcanology- low & high temperature geochemistry- experimental - theoretical - field related studies- mineralogy - crystallography- environmental geosciences- archaeometry
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