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Postcollisional mafic igneous rocks record crust-mantle interaction during continental deep subduction

机译:碰撞后的镁铁质火成岩记录了大陆深层俯冲过程中的地幔相互作用

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Findings of coesite and microdiamond in metamorphic rocks of supracrustal protolith led to the recognition of continental subduction to mantle depths. The crust-mantle interaction is expected to take place during subduction of the continental crust beneath the subcontinental lithospheric mantle wedge. This is recorded by postcollisional mafic igneous rocks in the Dabie-Sulu orogenic belt and its adjacent continental margin in the North China Block. These rocks exhibit the geochemical inheritance of whole-rock trace elements and Sr-Nd-Pb isotopes as well as zircon U-Pb ages and Hf-O isotopes from felsic melts derived from the subducted continental crust. Reaction of such melts with the overlying wedge peridotite would transfer the crustal signatures to the mantle sources for postcollisional mafic magmatism. Therefore, postcollisonal mafic igneous rocks above continental subduction zones are an analog to arc volcanics above oceanic subduction zones, providing an additional laboratory for the study of crust-mantle interaction at convergent plate margins.
机译:在地壳上原岩的变质岩中发现堇青石和微金刚石,导致了对大陆俯冲至地幔深度的认识。地壳与地幔的相互作用预计将在陆相岩石圈以下地幔楔下方俯冲大陆壳的过程中发生。大别-苏鲁造山带及其后大陆边缘华北地块的碰撞后镁铁质火成岩记录了这一点。这些岩石表现出全岩石痕量元素和Sr-Nd-Pb同位素以及锆石U-Pb年龄和源自俯冲大陆壳的长英质熔体的Hf-O同位素的地球化学遗传。这种熔体与上覆的楔形橄榄岩的反应会将地壳特征转移到地幔源,以用于碰撞后的铁镁质岩浆作用。因此,大陆俯冲带上方的科利基后镁铁质火成岩类似于海洋俯冲带上方的弧形火山,为研究聚敛板块边缘的地幔幔相互作用提供了额外的实验室。

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