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Continental basalts record the crust-mantle interaction in oceanic subduction channel: A geochemical case study from eastern China

机译:大陆玄武岩记录了海洋俯冲通道中的地壳-地幔相互作用:来自中国东部的地球化学案例研究

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Continental basalts, erupted in either flood or rift mode, usually show oceanic island basalts (OIB)-like geochemical compositions. Although their depletion in Sr-Nd isotope compositions is normally ascribed to contributions from the asthenospheric mantle, their enrichment in large ion lithophile elements (LILE) and light rare earth elements (LREE) is generally associated with variable enrichments in the Sr-Nd isotope compositions. This indicates significant contributions from crustal components such as igneous oceanic crust, lower continental crust and seafloor sediment. Nevertheless, these crustal components were not incorporated into the mantle sources of continental basalts in the form of solidus rocks. Instead they were processed into metasomatic agents through low-degree partial melting in order to have the geochemical fractionation of the largest extent to achieve the enrichment of LILE and LREE in the metasomatic agents. Therefore, the mantle sources of continental basalts were generated by metasomatic reaction of the depleted mid-ocean ridge basalts (MORB) mantle with hydrous felsic melts. Nevertheless, mass balance considerations indicate differential contributions from the mantle and crustal components to the basalts. While the depleted MORB mantle predominates the budget of major elements, the crustal components predominate the budget of melt-mobile incompatible trace elements and their pertinent radiogenic isotopes. These considerations are verified by model calculations that are composed of four steps in an ancient oceanic subduction channel: (1) dehydration of the subducting crustal rocks at subarc depths, (2) anataxis of the dehydrated rocks at postarc depths, (3) metasomatic reaction of the depleted MORB mantle peridotite with the felsic melts to generate ultramafic metasomatites in the lower part of the mantle wedge, and (4) partial melting of the metasomatites for basaltic magmatism. The composition of metasomatites is quantitatively dictated by the crustal metasomatism through melt-peridotite reaction at the slab-mantle interface in oceanic subduction channels. Continental basalts of Mesozoic to Cenozoic ages from eastern China are used as a case example to illustrate the above petrogenetic mechanism. Subduction of the paleo-Pacific oceanic slab beneath the eastern edge of Eurasian continent in the Early Mesozoic would have transferred the crustal signatures into the mantle sources of these basalts. This process would be associated with rollback of the subducting slab at that time, whereas the partial melting of metasomatites takes place mainly in the Late Mesozoic to Cenozoic to produce the continental basalts. Therefore, OIB-like continental basalts are also the product of subduction-zone magmatism though they occur in intraplate settings. (C) 2017 Elsevier Ltd. All rights reserved.
机译:以洪水或裂谷模式喷发的大陆玄武岩通常显示出海洋岛屿玄武岩(OIB)状的地球化学成分。尽管它们在Sr-Nd同位素组成中的耗竭通常归因于软流圈地幔的贡献,但它们在大型离子亲石元素(LILE)和轻稀土元素(LREE)中的富集通常与Sr-Nd同位素组成中的可变富集有关。这表明来自诸如火成的海洋地壳,下部的大陆壳和海底沉积物等地壳成分的重大贡献。然而,这些地壳成分并未以固相线形式并入大陆玄武岩的地幔源中。相反,它们通过低度部分熔融被加工成交联剂,以便最大程度地进行地球化学分馏,以实现交联剂中LILE和LREE的富集。因此,大陆玄武岩的地幔来源是由贫化中洋脊玄武岩(MORB)地幔与含水长英质熔体的交代反应产生的。然而,从质量平衡的角度来看,地幔和地壳成分对玄武岩的贡献不同。尽管耗尽的MORB地幔占主要元素的预算占主导地位,但地壳成分占熔融移动不相容的微量元素及其相关放射性同位素的预算占主导地位。这些考虑已通过模型计算得到了验证,该模型计算由一个古老的海洋俯冲通道中的四个步骤组成:(1)俯冲地壳岩石在亚弧深度处的脱水;(2)脱水岩石在弧后深度处的厌氧度;(3)交代反应贫化的MORB地幔橄榄岩与长英质熔体融化,在地幔楔的下部生成超镁铁质变质岩,以及(4)变质岩的部分融化,用于玄武岩浆作用。地壳交代作用是通过大洋俯冲通道中平板-地幔界面的熔融-橄榄岩反应来定量确定的。以中国东部中生代至新生代的大陆玄武岩为例,说明了上述成岩机制。在中生代早期在欧亚大陆东部边缘之下的古太平洋大洋板俯冲将把地壳特征转移到这些玄武岩的地幔源中。这个过程将与俯冲板块的回滚有关,而变色岩的部分融化主要发生在中生代晚期至新生代,以产生大陆玄武岩。因此,尽管OIB样的大陆玄武岩发生在板内,但它们也是俯冲带岩浆作用的产物。 (C)2017 Elsevier Ltd.保留所有权利。

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