中非喀麦隆阿达马瓦高原ngaound北部橄榄岩主体玄武岩熔岩的岩石学研究

Njankouo Ndassa Zénab Nouraan, Nkouandou Oumarou Faarouk, Bardintzeff Jacques-Marie, Ganwa Alexandre Alembert, Fagny Mefire Aminatou, T. Arnaud
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引用次数: 2

摘要

在阿达马瓦高原北部的ngaoundsamr露头的小火山和新生代玄武岩熔岩流,含有大量的地幔橄榄岩包体。它们由分米到米大小的碗状竞技场和深色基质块组成,显示橄榄石、斜辉石和氧化物的晶体。所有熔岩均呈微晶状斑状结构,同相自面状至亚面状晶体淹没在同矿物+斜长石微岩的基质中。显微探针分析表明,橄榄石斑晶相对于微晶和微晶(fo71.1 - 75.9%)富fo(80.9- 84.3%)。橄榄石杂晶含高镁含量(83.9% ~ 89.8%)。斜辉石是透辉石和辉石。氧化物晶体为钛磁铁矿,斜长石为辉长石和副长石。ICP-AES和ICP-MS全岩分析表明,鄂温山北部的寄主橄榄岩玄武质火山岩为典型碱性火山岩系列的欠饱和玄武岩。它们似乎没有受到地壳物质的污染。它们是深80km以上的石榴石地幔源部分熔融速率低的结果。ngaound 熔岩北部的喷发是由泛非裂缝促成的,它们在向地表移动的过程中,以不同压力和深度的捕虏体的形式对次大陆岩石圈地幔进行了采样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Petrology of peridotite host basaltic lavas of northern Ngaoundéré (Adamawa plateau, Cameroon, Central Africa)
Small volcanoes and flows of Cainozoic basaltic lavas, containing numerous mantle peridotite xenoliths, outcrop at northern Ngaoundéré in Adamawa plateau. They are composed of arena of decimeter to meter in size of bowls and blocs of dark matrix, showing crystals of olivine, clinopyroxene and oxides. All lavas present microlitic porphyritic texture with euhedral to subhedral crystals of the same phases drowned in the matrix of the same minerals plus plagioclase microlites.Microprobe analyses show that olivine phenocrysts are relatively Fo-rich (80.9-84.3 %) compared to microphenocrysts and microcrysts (Fo71.1-75.9 %). Olivine xenocrysts are highly magnesian (83.9-89.8 %). Clinopyroxene are diopside and augite. Oxides crystals are Ti-magnetite and plagioclase are labradorite and bytownite.ICP-AES and ICP-MS whole rocks analyses show that the host peridotite basaltic lavas of northern Ngaoundéré are undersaturated basanites of typical alkaline lava series. They seem not contaminated by crustal materials. They are the results of low partial melting rate of the garnet mantle source located at more than 80 km depth. The eruptions of northern Ngaoundéré lavas have been facilitated by Pan African cracks and they have sampled the subcontinental lithospheric mantle as xenoliths at different pressures and depths on their way to the surface.  
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