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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Cretaceous crust-mantle interaction and tectonic evolution of Cathaysia Block in South China: Evidence from pulsed mafic rocks and related magmatism
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Cretaceous crust-mantle interaction and tectonic evolution of Cathaysia Block in South China: Evidence from pulsed mafic rocks and related magmatism

机译:中国南方华夏地块的白垩纪地幔相互作用和构造演化:脉冲镁铁质岩和相关岩浆作用的证据

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Cretaceous tectono-magmatic evolution of the Cathaysia Block in South China is important but their mechanism and geodynamics remain highly disputed. In this study we carried out a detailed geochemical study on the recently found Kuokeng mafic dikes in the western Fujian Province (the Interior Cathaysia Block) to reveal the petrogenesis and geodynamics of the Cretaceous magmatism. Kuokeng mafic dikes were emplaced in three principal episodes: similar to 129 Ma (monzogabbro), similar to 107 Ma (monzodiorite), and similar to 97 Ma (gabbro). Geochemical characteristics indicate that the monzogabbros were derived from the unmodified mantle source, while gabbros were likely derived from metasomatized mantle by subducted slab (fluids and sediments). Sr-Nd isotope compositions indicate that the parental magmas of the monzodiorites were generated by mixing of enriched, mantle-derived, mafic magmas and felsic melts produced by partial melting of crustal materials. Until the Early Cretaceous (similar to 123 Ma), the dominant ancient Interior Cathaysia lithospheric mantle exhibited insignificant subduction signature, indicating the melting of asthenospheric mantle and the consequent back-arc extension, producing large-scale partial melting of the crustal materials under the forward subduction regime of the paleo-Pacific plate. The monzodiorites and gabbros appear to be associated with northwestward subduction of Pacific plate under an enhanced lithospheric extensional setting, accompanying with mantle modification, which triggered shallower subduction-related metasomatically enriched lithospheric mantle to melt partially. After ca. 110 Ma, the coastal magmatic belts formed due to a retreat and rollback of the subducting Pacific Plate underneath SE China in the continental margin arc system. (C) 2015 Elsevier B.V. All rights reserved.
机译:华南地区华夏地块的白垩纪构造岩浆演化很重要,但其机理和地球动力学仍存在争议。在这项研究中,我们对最近在福建省西部(内陆的华夏地块)发现的阔坑铁镁质堤防进行了详细的地球化学研究,以揭示白垩纪岩浆作用的岩石成因和地球动力学。 Kuokeng黑手党堤防被放置在三个主要事件中:类似于129 Ma(单闪闪石),类似于107 Ma(闪闪闪石)和类似于97 Ma(闪闪石)。地球化学特征表明,monzogabbros来源于未经修饰的地幔源,而辉长岩很可能来源于俯冲板(流体和沉积物)交代的地幔。 Sr-Nd同位素组成表明,单晶闪长岩的母岩浆是通过混合富集的,来自地幔的镁铁质岩浆和由地壳材料部分熔融而产生的长英质熔体而产生的。直到白垩纪早期(类似于123 Ma),占主导地位的古代内陆海棠岩石圈地幔都表现出微不足道的俯冲特征,表明软流圈地幔的融化和随之而来的弧后伸展,使正向的地壳物质发生了大规模的部分融化。古太平洋板块俯冲带。在增强的岩石圈伸展背景下,Monzodiorites和辉长岩似乎与太平洋板块向西北俯冲有关,伴随着地幔的改变,这引起了较浅的俯冲相关的交代富集的岩石圈地幔部分融化。后约。 110 Ma,沿海岩浆带,是由于大陆边缘弧系中中国东南部之下俯冲太平洋板块的退缩和回滚而形成的。 (C)2015 Elsevier B.V.保留所有权利。

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