首页> 外文期刊>Journal of Asian earth sciences >Petrogenesis of the early Cretaceous volcanic rocks in the North Huaiyang tectono-magmatic unit of the Dabie Orogen, eastern China: Implications for crust-mantle interaction
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Petrogenesis of the early Cretaceous volcanic rocks in the North Huaiyang tectono-magmatic unit of the Dabie Orogen, eastern China: Implications for crust-mantle interaction

机译:东部大别造山带淮北构造-岩浆单元早白垩世火山岩的成岩作用:地壳-地幔相互作用的意义

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New elemental and isotopic data are presented for the early Cretaceous felsic to mafic volcanic rocks in the North Huaiyang tectono-magmatic unit (NHY) of the Dabie Orogen, in order to investigate their petrogenesis and provide insights into the nature of the late Mesozoic lithosphere mantle beneath the region and its tectonic relationship with neighboring blocks. LA-ICP-MS zircon U-Pb dating reveals that volcanic rocks of the Jingangtai Formation erupted in a quite short interval about 5 Mys during the Early Cretaceous (128-123 Ma). The rocks have wide ranges of SiO2 (48-68 wt.%) and MgO (0.6-5.6 wt.%) contents. They are enriched in large-ion-lithophile-elements (LILE) (e.g. Rb, Ba) and light rare-earth-elements (LREE), and depleted in high field strength elements (e.g. Nb, Ta and Ti) with weak negative Eu anomalies (Eu/Eu* = 0.71-0.94). Meanwhile, the rocks show relatively high whole-rock initial Sr-87/Sr-86 ratios (0.7074-0.7094), strong negative epsilon(Nd)(t) (-19.1 to -15.8) and zircon epsilon(Hf) values (-20.7 to -14.1). Such typical "continental" geochemical characteristics did not result from crustal contamination during magma ascent, but from an enriched mantle source modified by materials from the subducted Yangtze Craton during the Triassic continental collision. We propose that the petrogenesis of the large-scale contemporaneous magmatism of Dabie Orogen including felsic to mafic volcanic rocks in the NHY reflects an intensive lithospheric thinning and extension during the early Cretaceous as a tectonic response to the change of plate motion of westward subducted Pacific Plate beneath the Eurasian continent. (C) 2016 Elsevier Ltd. All rights reserved.
机译:提出了大别造山带北淮阳构造岩浆岩单元(NHY)中早白垩世长英质至镁铁质火山岩的新的元素和同位素数据,以便研究它们的岩石成因并提供对晚中生代岩石圈地幔性质的认识。区域下方及其与相邻块的构造关系。 LA-ICP-MS锆石U-Pb测年表明,白垩纪早期(128-123 Ma),金刚台组火山岩在大约5 Mys的短时间内爆发。岩石的SiO2(48-68 wt。%)和MgO(0.6-5.6 wt。%)含量范围很广。它们富含大离子亲石元素(LILE)(例如,Rb,Ba)和轻稀土元素(LREE),并且贫化了具有弱负Eu的高场强元素(例如Nb,Ta和Ti)异常(Eu / Eu * = 0.71-0.94)。同时,岩石显示出较高的整岩初始Sr-87 / Sr-86比值(0.7074-0.7094),强负ε(Nd)(t)(-19.1至-15.8)和锆石ε(Hf)值(- 20.7至-14.1)。这种典型的“大陆”地球化学特征不是由岩浆上升期间的地壳污染引起的,而是由三叠纪大陆碰撞中被俯冲的扬子的材料修饰的富集地幔源引起的。我们认为,大别山造山带同时期大型岩浆活动的岩石成因,包括北半球早泥质至镁铁质火山岩,反映了白垩纪早期岩石圈强烈的减薄和伸展,这是对西俯冲太平洋板块运动变化的构造响应。在欧亚大陆下方。 (C)2016 Elsevier Ltd.保留所有权利。

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