首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Age constraints on late Mesozoic lithospheric extension and origin of bimodal volcanic rocks from the Hailar basin, NE China
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Age constraints on late Mesozoic lithospheric extension and origin of bimodal volcanic rocks from the Hailar basin, NE China

机译:中国东北海拉尔盆地晚中生代岩石圈伸展和双峰火山岩成因的年龄限制

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Following the amalgamation of the late Mesoproterozoic-Carboniferous Central Asian Orogenic Belt with the Siberian and North China cratons, NE China underwent late Mesozoic lithospheric extension and widespread formation of volcano-sedimentary basins. We report U-Pb zircon ages and geochemical data for mafic and felsic volcanic rocks from the Hailar basin, located about 1000 km north of Beijing. Zircon populations of six felsic rock samples analyzed by laser ablation ICP-MS yielded similar U-Pb age spectra ranging from 158 to 125 Ma. The youngest zircon ages are interpreted as time of magma eruption and the xenocrystic zircon-age spectra as evidence for a protracted melting of lower crust due to the underplating of mantle-derived magmas during lithospheric extension. The volcanic assemblage has a bimodal composition comprising geochemically evolved trachybasalts and felsic volcanic rocks of I-and subordinate A-type compositions. The mafic volcanic rocks have negative Nb-anomalies, high Th/Nb and Ce/Pb ratios, low initial E_(Nd) values of + 0.4 to + 3.4, and radiogenic Pb and Sr isotopes all interpreted as evidence for the melting of passively upwelling asthenosphere and lithospheric mantle previously modified by plate subduction. The xenocrystic zircon ages and chemical/isotopic data of the felsic rocks support an origin from juvenile crustal protoliths: the data of I-type felsic rocks are consistent with the melting of underplated mafic protoliths and those of the A-type rhyolites support the melting of a crustal source with a composition similar to the I-type felsites with apatite controlling their Nb anomaly. The evidence for the persistent melting of a subduction-modified mantle in NE China is in agreement with a model of an extending coupled upper mantle-crust system due to a retreating Paleo-Pacific trench.
机译:继中元古代—石炭纪的中亚造山带与西伯利亚和华北克拉通的合并后,中国东北经历了中生代晚期的岩石圈扩张和火山沉积盆地的广泛形成。我们报告了位于北京以北约1000公里的海拉尔盆地的镁铁质和长英质火山岩的U-Pb锆石年龄和地球化学数据。通过激光烧蚀ICP-MS分析的六个长英质岩石样品的锆石种群产生了相似的U-Pb年龄谱,范围从158到125 Ma。最小的锆石年龄被解释为岩浆喷发的时间,异晶锆石年龄谱被认为是由于岩石圈伸展过程中来自地幔的岩浆底部不足而导致下地壳长时间熔化的证据。火山组合具有双峰成分,包括地球化学演化的玄武岩和I型和次级A型成分的长英质火山岩。镁铁质火山岩具有负Nb异常,高Th / Nb和Ce / Pb比,低E_(Nd)初始值(+ 0.4至+ 3.4)和放射性Pb和Sr同位素均被解释为被动上升流融化的证据以前通过板块俯冲而改变的软流圈和岩石圈地幔。长英质岩石的异相锆石年龄和化学/同位素数据支持了幼年地壳原型的起源:I型长英质岩石的数据与底层镁铁质原型的熔融一致,A型流纹岩的数据支持组成类似于I型镁铁质的地壳源,磷灰石控制着其Nb异常。俯冲改造后的地幔在中国东北地区持续融化的证据与古太平洋沟渠后退导致的扩展的上地幔-地壳耦合系统模型相吻合。

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