巴西东北部和非洲西北部含蛇绿岩的增生楔遗迹:新元古代冈瓦纳大陆西部海洋的连接线

Lauro Cézar M. de Lira Santos , Fabrício A. Caxito , Merlain H. Bouyo , Sonia Ouadahi , Kawther Araïbia , Geysson A. Lages , Glenda L. Santos , João Paulo A. Pitombeira , Peter A. Cawood
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引用次数: 13

摘要

罗迪尼亚新元古代的分裂导致分散的克拉通之间形成了几个海洋领域,这些领域后来在冈瓦纳大陆的组装过程中被消耗。在其西部,冈瓦纳大陆内部造山带形成于新元古代晚期-寒武纪早期的巴西-泛非造山运动。现有的地球物理、结构和岩石学数据表明,曾经连接博博雷马省(巴西东北部)、图阿雷格地盾(霍格)和中非地区(非洲西北部)的复杂剪切带网络可能代表了古缝合线,标志着太古宙-古元古代古大陆(如亚马逊西非和刚果)之间的碰撞事件。与该组结构相关的镁铁质、超镁铁质和沉积序列分别代表被分解的蛇绿岩片,被解释为冈瓦纳大陆组合晚期侵位的海洋残余物(sensu lato)。例如,Transbrasiliano-Khandi-In-Tedeini Silet复合剪切系统横切岩石组合,保留了海洋地壳过渡发展的复杂历史(Novo-Oriente杂岩),与博尔博莱马省和非洲西北部原始到演化的岩浆弧和超高压岩石相关联。在Borborema省中部,保存的蛇绿岩片被韧性和脆性变形事件强烈叠加,但部分保存的MORB状角闪岩类似于俯冲相关类型,它们在新元古代早期和晚期结晶,通过地体吸积对接,并被走滑剪切带分散。在Borborema省南部,新元古代蛇绿岩组合的一个例子是Monte Orebe杂岩,该杂岩包括T-MORB镁铁质岩石、超镁铁质透镜体和类似于海盆扩张早期至晚期的呼出沉积岩,在伯南布哥-阿拉戈斯超地体和São Francisco克拉通之间的会聚板块运动期间侵位。在喀麦隆发现了相关单元,包括Lomié和Boumnyebel杂岩的强水热超镁铁质岩石,这些岩石在结构上受刚果克拉通北西边缘顶部至南部边缘的推覆控制。在所有情况下,蛇绿杂岩都与洋内和大陆岩浆弧以及与显生宙缝合带相当的地球物理特征有关。尽管被强烈肢解,但部分保存在冈瓦纳大陆西部主要带内的新元古代海洋地壳被报废,这表明了吸积碰撞造山运动在其组装过程中的作用。
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Relics of ophiolite-bearing accretionary wedges in NE Brazil and NW Africa: Connecting threads of western Gondwana´s ocean during Neoproterozoic times

Neoproterozoic breakup of Rodinia resulted in the formation of several oceanic realms between dispersing cratons, which were later consumed during the assembly of Gondwana. In its western portion, the interior orogenic belts of Gondwana formed during the Brasiliano-Pan African Orogeny in the late Neoproterozoic-early Cambrian. Available geophysical, structural and petrological data suggest that the complex network of shear zones that once connected the Borborema province (NE Brazil), Tuareg shield (Hoggar) and Central African domain (NW Africa) likely represent ancient sutures that mark collisional episodes between Archean-Paleoproterozoic paleocontinents such as Amazonian-West African and São Francisco-Congo. Mafic, ultramafic and sedimentary sequences associated with this set of structures respresent dismembered ophiolite slices interpreted as oceanic remnants (sensu lato) that were emplaced during the late stages of the Gondwana assembly. For instance, the composite Transbrasiliano-Khandi-In-Tedeini-Silet shear system crosscuts rock assemblages preserving a complex history of oceanic-crust-transition development (Novo Oriente complex) in association with primitive to evolved magmatic arcs and UHP rocks both in the Borborema province and NW Africa. In the central Borborema province, preserved ophiolitic slices are strongly overprinted by ductile and brittle deformation events, but partially preserved MORB-like amphibolites are akin to subduction-related-types that crystallized in early- and late Neoproterozoic times docked via terrane accretion and dispersed by strike-slip shear zones. In the southern Borborema province, an example of a Neoproterozoic ophiolitic assemblage is the Monte Orebe complex, that encompasses T-MORB mafic rocks, ultramafic lenses, and exhalative sedimentary rocks akin to early to late stages of oceanic basin spreading, emplaced during convergent plate motions between the Pernambuco-Alagoas superterrane and the São Francisco craton. Correlative units are found in Cameroon, including the strongly hydrotermalized ultramafic rocks of the Lomié and Boumnyebel complexes, that are structurally controlled by top-to-the-south verging nappes found in the N-NW margin of the Congo craton. In all scenarios, the ophiolitic complexes are related to intra-oceanic and continental magmatic arcs as well as to geophysical signatures comparable to Phanerozoic suture zones. Although strongly dismembered, scrapped off Neoproterozoic oceanic crust partially preserved within the major belts of western Gondwana demonstrate the role of accretion-collisional orogenesis during its assembly.

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