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Evolving mantle sources in postcollisional early Permian-Triassic magmatic rocks in the heart of of Tianshan Orogen (western China)

机译:天山造山带心地带碰撞后的早二叠世-三叠纪岩浆岩中不断变化的地幔源(中国西部)

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摘要

Magmatism post-dating the initiation of continental collision provides insight into the late stage evolution of orogenic belts including the composition of the contemporaneous underlying subcontinental mantle. The Awulale Mountains, in the heart of the Tianshan Orogen, display three types of post-collisional mafic magmatic rocks. (1) a medium to high K calc-alkaline mafic volcanic suite (∼ 280 Ma), which display low La/Yb ratios (2.2 – 11.8) and a wide range of ε(t) values from +1.9 to +7.4. This suite of rocks was derived from melting of depleted metasomatized asthenospheric mantle followed by upper crustal contamination. (2) Mafic shoshonitic basalts (∼ 272 Ma), characterized by high La/Yb ratios (14.4 – 20.5) and more enriched isotope compositions (ε(t) = +0.2 – +0.8). These rocks are considered to have been generated by melting of lithospheric mantle enriched by melts from the Tarim continental crust that was subducted beneath the Tianshan during final collisional suturing. (3) Mafic dikes (∼ 240 Ma), with geochemical and isotope compositions similiar to the ∼280 Ma basaltic rocks. This succession of post-collision mafic rock types suggests there were two stages of magma generation involving the sampling of different mantle sources. The first stage, which occurred in the early Permian, involved a shift from depleted asthenospheric sources to enriched lithospheric mantle. It was most likely triggered by the subduction of Tarim continental crust and thickening of the Tianshan lithospheric mantle. During the second stage, in the middle Triassic, there was a reversion to more asthenospheric sources, related to post-collision lithospheric thinning.
机译:大陆碰撞开始后的岩浆作用为造山带的晚期演化提供了见识,包括同期下层次大陆幔的组成。位于天山造山带中心的Awulale山具有三种类型的碰撞后镁铁质岩浆岩。 (1)中至高钾钙碱性镁铁质火山岩组合(〜280 Ma),其La / Yb比低(2.2 – 11.8),ε(t)值范围从+1.9到+7.4。这套岩石是由贫化交代的软流圈地幔融化,然后被上地壳污染而产生的。 (2)镁铁质钾盐玄武岩(〜272 Ma),特征在于高的La / Yb比(14.4 – 20.5)和更丰富的同位素组成(ε(t)= +0.2 – +0.8)。这些岩石被认为是由于岩石圈地幔融化而产生的,而岩石圈地幔融化了塔里木大陆地壳的熔体,该熔体在最后的碰撞缝合过程中在天山之下俯冲了。 (3)基性岩堤(〜240 Ma),具有与〜280 Ma的玄武岩相似的地球化学和同位素组成。碰撞后的镁铁质岩石类型的这种连续性表明,存在着两个阶段的岩浆生成,涉及对不同地幔源的采样。第一个阶段发生在二叠纪早期,涉及从软弱的软流圈源向富集的岩石圈地幔转变。这很可能是由塔里木大陆壳俯冲和天山岩石圈地幔增厚引起的。在第二阶段,在三叠纪中部,与碰撞后岩石圈变薄有关,转向了更多的软流圈源。

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