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首页> 外文期刊>Journal of African Earth Sciences >The Quaternary volcanic rocks of the northern Afar Depression (northern Ethiopia): Perspectives on petrology, geochemistry, and tectonics
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The Quaternary volcanic rocks of the northern Afar Depression (northern Ethiopia): Perspectives on petrology, geochemistry, and tectonics

机译:北部阿法尔De陷(埃塞俄比亚北部)的第四纪火山岩:岩石学,地球化学和构造学的观点

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The northern Afar Depression is one of the most volcano-tectonically active parts of the East African Rift system, a place where oceanic rifting may be beginning to form an incipient oceanic crust. In its center, over an area that is similar to 80 km long and similar to 50 km wide, there are seven major NNW-SSE-aligned shield volcanoes/volcanic edifices surrounded by compositionally distinct fissure-fed basalts. The Quaternary lavas in this area range from transitional to tholeiitic basalts, with significant across-axis variation both in mineralogy and chemistry. The variation in the contents of the major elements (TiO2, Al2O3, and Fe2O3), incompatible trace elements (Nd, Hf, Th, Ta), and the contents and ratios of the rare earth elements (REE) (e.g., (La/Yb)n = 5.3-8.9) indicate some variation in the petrogenetic processes responsible for the formation of these basalts. However, the variation in isotopic compositions of the mafic lavas is minimal (Sr-87/Sr-86 = 0.7036-0.7041,Nd-143/Nd-144 0.51286-0.51289), which suggests only one source for all the Danakil Depression basalts. These basalts have isotope and incompatible trace element ratios that overlap with those of the Oligocene High Tit flood basalts from the Ethiopian Plateau, interpreted as being derived from the last phase/tail of the Afar mantle plume source. Moreover, the Ce/Pb, Ba/U ratios indicate that the involvement of continental crust in the petrogenesis of the basaltic rocks is minimal; instead, both depth and degree of melting of the source reservoir underneath the northern Afar Depression played a major role for the production of incompatible element-enriched basalts (e.g., Ale-Bagu Shield basalts) and the incompatible element-depleted tholeiitic basalts (e.g., Erta'Ale and Alu Shield basalts). (C) 2015 Elsevier Ltd. All rights reserved.
机译:北部的阿法尔De陷是东非裂谷系统中火山活动最活跃的部分之一,东非裂谷可能是开始形成海洋裂谷的地方。在它的中心,在一个长约80 km,宽约50 km的区域上,有7个主要的NNW-SSE对准的盾构火山/火山构造,周围是成分不同的裂隙玄武岩。该区域的第四纪熔岩范围从过渡玄武岩到生辉玄武岩,在矿物学和化学上都存在明显的跨轴变化。主要元素(TiO2,Al2O3和Fe2O3)的含量,不相容的痕量元素(Nd,Hf,Th,Ta)的变化以及稀土元素(REE)的含量和比率(例如(La / Yb)n = 5.3-8.9)表示导致这些玄武岩形成的成岩过程的某些变化。但是,镁铁质熔岩的同位素组成变化很小(Sr-87 / Sr-86 = 0.7036-0.7041,Nd-143 / Nd-144 0.51286-0.51289),这表明所有Danakil低压玄武岩只有一种来源。这些玄武岩具有同位素和不相容的痕量元素比率,与埃塞俄比亚高原的渐新世高山雀洪水玄武岩重叠,被解释为源自阿法尔地幔羽源的最后一期/尾矿。此外,Ce / Pb,Ba / U比值表明,大陆壳对玄武岩岩石成因的影响极小。取而代之的是,北部Afar凹陷下方的源储层的融化深度和融化度在生产不相容元素丰富的玄武岩(例如Ale-Bagu Shield玄武岩)和不相容元素贫化的生硬玄武岩(例如, Erta'Ale和Alu Shield玄武岩)。 (C)2015 Elsevier Ltd.保留所有权利。

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