首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Vestiges of a fore-arc oceanic crust in the Western Mediterranean: Geochemical constraints from North-East Algeria
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Vestiges of a fore-arc oceanic crust in the Western Mediterranean: Geochemical constraints from North-East Algeria

机译:西部地中海的前弧海外壳的遗迹:东北阿尔及利亚的地球化学约束

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The present day architecture of the Western Mediterranean mainly results from the interplay of different lithospheric plates and the Cenozoic consumption of various branches of the Alpine Tethys and Neo-Tethys Oceans. Identifying relics of these oceanic domains in the peri-Mediterranean belts enables pinpointing the earliest stages of this evolutionary framework. In NE Algeria, the Kef Lakhal Complex (Edough Massif) is composed of amphibolites and meta-gabbros metamorphosed under amphibolite facies conditions and thrust onto the northern African margin during earliest Miocene. Geochemical analyses reveal that amphibolites and metagabbros have major and trace element signatures characteristic of tholeiitic basalts and gabbros and display N-MORB (La/Sm N = 0.7-0.9) to E-MORB (La/Sm-N = 1.1-1.2) affinities. Enrichments in U and alkalis (Cs, Rb) and high Sr-87/(86)Srj ratios on bulk rocks and minerals (up to 0.70856) are typical of seawater alteration and indicate that the Kef Lakhal Complex represents a piece of altered oceanic crust. Parental magmas were derived from a Depleted Mantle source (WR epsilon Nd-i = 8.2-9.9 and epsilon Hf-i = 10.4-14.4) that preserved some canonical MORB ratios (Ti/Eu = 5700-7600 and Y/Ho = 27.4-29.0), but which was contaminated by a component akin to recycled oce- anic crust and associated sediments (Ce/Pb 10.5-22.2; Pb-206/Pb-204(i)= 18.41-18.74; Pb-207/Pb-204(i) 15.49-15.59; Pb-2(08)/Pb-204(i) = 37.73-38.37). The sedimentary component is consistent with a volcanidastic origin and substantiates an intra-oceanic setting. The geochemical characteristics of the Kef l.akhal rocks are comparable to present day (Mariana, W Pacific Ocean) or fossil (Xigaze, SE Tibet) fore-arc oceanic crust. An overview of the Western Mediterranean geodynamic indicates that the most likely period for initiating formation of a fore-arc corresponds either to the Early/late Cretaceous or to the Middle Eocene. Ar-40/Ar-39 dating on amphibole further indicate that after thrusting onto the African margin, the Kef Lakhal Complex cooled down to c.550 degrees C at 18.14 +/- 027 Ma (2 sigma). (C) 2020 Elsevier B.V. All rights reserved.
机译:西部地中海的当今建筑主要由不同岩石板的相互作用和高山特提斯和新特提希森海洋的各种分支的新生代消费。识别Peri-Mediterranean皮带中这些海洋域的遗物,使得能够确定这种进化框架的最早阶段。在Ne Algeria,Kef Lakhal Complex(Edoug Massif)由Amphibolites和Meta-Gabbros Metormorphosy在倒角相变质组成,并在最早的中医期间推动到北非利润率上。地球化学分析揭示了倒话和Metagrabbros具有烟草玄武岩和Gabbros的主要和痕量元素特征,并显示N-Morb(La / Sm n = 0.7-0.9)至E-Morb(La / SM-N = 1.1-1.2)亲和力。批量岩石和矿物质(Cs,Rb)和高级SR-87 /(86)SRJ比率(高达0.70856)的富集是海水变化的典型,表明Kef Lakhal Complex代表了一块改变的海洋地壳。珍珠岩浆衍生自耗尽的地幔源(WR Epsilon Nd-i = 8.2-9.9和Epsilon HF-I = 10.4-14.4),其保留了一些规范的Morb比率(Ti / Eu = 5700-7600和Y / Ho = 27.4- 29.0),但其被类似于再生的OCE-遗传外壳和相关沉积物(CE / PB 10.5-22.2; PB-206 / PB-204(i)= 18.41-18.74; PB-207 / PB-204 (i)15.49-15.59; Pb-2(08)/ pb-204(i)= 37.73-38.37)。沉积组分与火山塑造成一致,并证实了海洋内部环境。 KEF L.AKHAL岩石的地球化学特征与现今(Mariana,W Pacific Ocean)或化石(XIGAZE,SE TIBET)前弧海外壳相当。西部地中海地球节动力学的概述表明,用于开始形成前弧的最可能的时间对应于早期/晚期白垩纪或中期何种。 Ar-40 / Ar-39在锥体上约会,进一步表明在将非洲边缘撞到非洲边缘后,在18.14 +/- 027 mA(2 sigma)上将Kef Lakhal复合物冷却至C.550℃。 (c)2020 Elsevier B.V.保留所有权利。

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