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Petrological and Geochemical Studies on the Si-Undersaturated Rocks of the Mount Cameroon: Genesis of the Camptonite and Nephelinite at the Cameroon Hot Line

机译:喀麦隆山岩石岩石岩石岩石的岩石和地球化学研究:喀麦隆热线中龟岩和尼触石的成因

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The Cameroon hot line is dominated by magmatic rocks. The variations of magma and chemistry are generally due to the difference of physical conditions and chemistry in the magma source region during the ascent of magma. The Mt Etinde and the Mt Cameroon, both edifices belong to the Cameroon Hot line, have a particularity some rare rocks such as camptonite and nephelinite. The relationship between the silica undersaturated rocks in the both edifices is characterized by the lateral variation appear through the petrography of the different rocks. The concerned geochemical data allow to compare the Mount Etinde nephelinite and Mount Cameroon camptonite where the differentiation process reflects geochemical affinities from a basaltic magma source on the Cameroon hot line. The compatible elements between the Mount Etinde nephelinite and the Mount Cameroon camptonite and basalt correlate with the difference in modal compositions of mineral phases. The lateral variation of major and trace element contents in the Mount Cameroon camptonite and Mount Etinde nephelinite seem to be related to the difference in the fractional crystallization processes of mineral phases, the difference in the partial melting processes and the metasomatism source rich in volatile. The silica-undersaturated character of the camptonite and nephelinite could be attributed to assimilation of carbonate rocks within depth-level magma chambers. Trace element AFC modelling revealed that the parental magmas of both edifice volcanic rocks were mostly affected by fractional crystallisation coupled with metasomatism process in Ca rich source.
机译:喀麦隆热线由岩浆岩石主导。岩浆和化学的变化通常是由于岩浆岩浆期间岩浆源区中物理条件和化学的差异。麦克风和喀麦隆都属于喀麦隆热线,具有一些稀有岩石,如寒盆龙岩和新蛋白质的特殊性。两者中的二氧化硅欠饱和岩石之间的关系的特征在于通过不同岩石的岩度出现的横向变化。有关地球化学数据允许比较Etinde尼触石和喀麦隆夏普尼山的山覆盆子,其中分化过程反映了喀麦隆热线上的玄武岩岩浆源的地球化学亲经。奥丁尼京泰山山和喀麦隆山山岩岩系之间的兼容元件与矿泉共阶段模态组合物的差异相关。 Mouse Campeponite和Mount Etinde Nephelinite的主要和痕量元素内容的横向变化似乎与矿物相的分数结晶过程的差异有关,部分熔化过程和富含挥发性的抗磷酸盐源的差异。 Campponite和Nephelinite的二氧化硅缺乏特征可归因于深度岩浆室内的碳酸盐岩体的同化。痕量元素AFC模型显示,两个大厦火山岩的父母岩浆主要受Ca Rich源中的弥漫性过程的分数结晶的影响。

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