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首页> 外文期刊>Arabian journal of geosciences >Petrology, geochemistry and remote sensing data of island arc assemblage along Wadi Abu Marawat, Central Eastern Desert, Egypt
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Petrology, geochemistry and remote sensing data of island arc assemblage along Wadi Abu Marawat, Central Eastern Desert, Egypt

机译:埃及中部东部沙漠瓦迪阿布马拉瓦特沿岛弧组合的岩石学,地球化学和遥感数据

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The basement rocks of Abu Marawat area comprise serpentinites (oldest), metavolcanics and their equivalent pyroclastics, intrusive metagabbro-diorite complex, synkinematic granitoids, Hammamat sediments and basic intrusion (youngest). Remote sensing ETM+ data of Abu Marawat area were analyzed, and band ratios technique was applied to discriminate between different varieties of these basement rocks. Serpentinites are represented by lensoidal bodies tectonically incorporated in the metavolcanics. On band ratio 5/7 image, they are characterized by very bright image signature. The metavolcanics comprise basalts, andesite and subordinate dacites together with their equivalent pyroclastics. They were regionally metamorphosed up to the greenschist facies and exhibit dark grey image signatures on band ratio 5/7 image. The metagabbro-diorite complex is made up of metagabbros, diorites and quartz diorites, whereas the synkinematic granitoids are formed of tonalites and granodiorites. The band ratio 5/7 image illustrates tonalites with dark image signature, whereas metagabbro-diorites and granodiorites exhibit grey image signature. The metavolcanic suites are of island arc setting, where metabasalts are of tholeiitic affinity, while the meta-andesites and metadacites are of calc-alkaline character. The metagabbroic and granitoid rocks are of I-type, calc-alkaline affinity and were formed in arc tectonic setting. They are enriched in LIL elements and depleted in Nb and HFS elements, a characteristic feature of subduction-related magmatism. The regular variation trends among the major and trace elements as well as the coincidence of the plotted samples favor the assumption that they are comagmatic and formed by processes such as fractional crystallization.
机译:阿布马拉瓦特地区的基底岩石包括蛇纹岩(最古老),超火山岩及其等效火山碎屑岩,侵入性闪长闪长岩复合体,动能花岗岩,哈马马特沉积物和基本侵入岩(最年轻)。分析了阿布马拉瓦特地区的遥感ETM +数据,并采用谱带比技术来区分这些基岩的不同种类。蛇纹岩由构造上包含在超火山岩中的类镜体代表。在带比率为5/7的图像上,它们的特征是非常明亮的图像签名。超级火山岩包括玄武岩,安山岩和下级菊苣及其等效的火山碎屑。它们在区域上已经变质,直到绿片岩相,并且在带比为5/7的图像上显示出深灰色的图像签名。变闪长岩-闪长岩复合体由变闪石,闪长岩和石英闪长岩组成,而运动学上的花岗岩类则由同辉石和花岗闪长岩组成。带宽比为5/7的图像说明了具有深色图像特征的同色石,而变石闪长岩和花岗闪长岩则具有灰色图像特征。变火山岩系为岛弧形,其中玄武岩具有陶粒质亲和力,而变质安山岩和变质辉石具有钙碱性特征。变质和花岗质岩石属于I型钙钙碱性,形成于大地构造环境。它们富含LIL元素,而贫化了Nb和HFS元素,这是俯冲相关岩浆作用的特征。主要元素和痕量元素之间的规律性变化趋势以及所绘制样品的重合性有利于以下假设:它们是共磁性的,并且是由诸如分步结晶的过程形成的。

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