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首页> 外文期刊>International Geology Review >Petrological and geochemical characteristics of the Samar Ophiolite ultramafic section: implications on the origins of the ophiolites in Samar and Leyte islands, Philippines
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Petrological and geochemical characteristics of the Samar Ophiolite ultramafic section: implications on the origins of the ophiolites in Samar and Leyte islands, Philippines

机译:Samar Ophiolite超空间剖面的岩石和地球化学特征:对菲律宾撒玛和莱特群岛Ophiolites起源的影响

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摘要

Cretaceous ophiolites and ophiolitic fragments occur in the Samar and Leyte islands in eastern central Philippines. The Samar Ophiolite is a complete crust-mantle sequence exposed in southern Samar, whereas the Tacloban and Malitbog ophiolite complexes are, respectively, located in the northeastern and southwestern portions of the nearby Leyte island. Despite the close proximity of these islands, the genetic relationship of these ophiolites and ophiolitic complexes, if any, remains to be elucidated. We present here new petrographic and geochemical data on the harzburgites and dunites of the ultramafic section of the Samar Ophiolite. These mantle peridotites are highly depleted residues which have low modal pyroxene content, high spinel Cr# (=0.62-0.79), and slightly enriched light rare earth element abundance with depletion in Zr and Ti. Such characteristics are typical of supra-subduction zone peridotites and strongly contrast with the abyssal signatures of the Tacloban and Malitbog ophiolite complexes. The absence of a structure between these adjacent ophiolite fragments initially hints that they form a single oceanic crust. However, with our new results, we suggest other possible mechanisms that could explain the relationship of these ophiolites.
机译:在菲律宾东部的撒马尔和莱特群岛发生白垩纪的眼镜和眼镜岛。 Samar Ophiolite是在撒玛的南部暴露的完整地壳型序列,而塔缩醛和Malitbog Ophiolite络合物分别位于附近的Leyte岛的东北部和西南部。尽管这些岛屿接近,但是,如果有的话,这些眼气质和眼镜络合物的遗传关系仍然待阐明。我们在这里展示新的岩石和地球化学数据上的撒玛孔孔的超微剖面的哈尔茨堡和Dunites。这些披风性偏见是具有低模态辉石含量的残留物,高尖晶石Cr#(= 0.62-0.79),Zr和Ti中的耗竭略微富集光稀土元素丰富。这种特征是典型的俯卧区偏见,与塔缩甲板和Malitbog ophiolite络合物的深度签名强烈造影。在不存在这些相邻的眼硫酸盐片段之间的结构最初提示它们形成单一的海洋外壳。然而,通过我们的新结果,我们建议其他可能的机制,可以解释这些眼镜岩的关系。

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