首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Origin of LateTriassic high-Mg adakitic granitoid rocks from the Dongjiangkou area, Qinling orogen, central China: Implications for subduction of continental crust
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Origin of LateTriassic high-Mg adakitic granitoid rocks from the Dongjiangkou area, Qinling orogen, central China: Implications for subduction of continental crust

机译:中国中部秦岭造山带东三口地区晚三叠世高镁质花岗岩状花岗岩的成因:对俯冲大陆壳的启示

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The origin of high-Mg adakitic granitoids in collisional orogens can provide important information about the nature of the lower crust and upper mantle during the orogenic process. Late-Triassic high-Mg adakitic granite and its mafic enclaves from the Dongjiangkou area, the Qinling orogenic belt, central China, were derived by partial melting of subducted continental crust and underwent interaction with the overlying mantle wedge peridotite. Adakitic affinity of the different fades of the Dongjiangkou granite body are: high Sr, Ba, high La/Yb and Sr/Y, low Y,Yb, Yb/Lu and Dy/Yb, and no significant Eu anomalies, suggesting amphibole + garnet and plagioclase-free restite in their source region. Evolved Sr-Nd-Pb isotopic compositions [(~(87)Sr/~(86)Sr); = 0.7050 to 0.7055,ε_(Nd)(t) = -6.6 to -3.3; (~(206)Pb/~(204)Pb), = 17.599 to 17.799, (~(207)Pb/~(204)Pb)_i= 15.507 to 15.526, (~(208)Pb/~(204)Pb)_i= 37.775 to 37.795] and high K2O, Rb, together with a large variation in zircon Hf isotopic composition (ε_(Hf)(t) = — 9.8 to +5.0), suggest that the granite was derived from reworking of the ancient lower continental crust. CaO, P2O5, K2O/Na2O, Cr, Ni, Nb/Ta, Rb/Sr and Y increase, and SiO2, Sr/Y and Eu/Eu* decrease with increasing MgO, consistent with interaction of primitive adakitic melt and overlying mantle peridotite. Zircons separated from the host granites have U-Pb concordia ages of 214 ± 2 Ma to 222 ± 2 Ma, compatible with exhumation ages of Triassic UHP metamorphic rocks in the Dabie orogenic belt Mafic microgranular enclaves and mafic dykes associated with the granite have identical zircon U-Pb ages of 220 Ma, and are characterized by lower SiO2, high TiO2, Mg# and similar evolved Sr-Nd-Pb isotopic composition. Zircons from mafic microgranular enclaves (MMEs) and mafic dykes also show a large variation in Hf isotopic composition with ε_(Hf)(t) between —11.3 and +11.3. It is inferred that they were formed by partial melting of enriched mantle lithosphere and contaminated by the host adakitic granite magma. In combination with the regional geology, high-Mg# adakitic granitoid rocks in the Dongjiangkou area are considered to have resulted from interaction between subducted Yangtze continental crust and the overlying mantle wedge. Triassic continental collision caused detachment of the Yangtze continental lithosphere subducted beneath the North China Craton, at ca. 220 Ma causing asthenosphere upwelling and exhumation of the continental crust. Triassic clockwise rotation of the Yangtze Craton caused extension in the Dabie area which led to rapid exhumation of the subducted continental lithosphere, while compression in the Qinling area and high-P partial melting (amphibole ± garnet stability field) of the subducted continental crust produced adakitic granitic magma that reacted with peridotite to form Mg-rich hybrid magma.
机译:碰撞造山带中高镁Adakitic花岗岩的起源可以提供有关造山过程中下地壳和上地幔性质的重要信息。来自中国中部秦岭造山带东江口地区的晚三叠世高镁埃达克质花岗岩及其镁铁质飞地,是通过俯冲陆壳部分熔融并与上覆地幔楔形橄榄岩相互作用而获得的。东江口花岗岩体不同退色的亲和力为:高Sr,Ba,高La / Yb和Sr / Y,低Y,Yb,Yb / Lu和Dy / Yb,且无明显的Eu异常,表明闪石+石榴石以及在其源区中没有斜长石的重晶石。演化的Sr-Nd-Pb同位素组成[(〜(87)Sr /〜(86)Sr); = 0.7050至0.7055,ε_(Nd)(t)= -6.6至-3.3; (〜(206)Pb /〜(204)Pb),= 17.599至17.799,(〜(207)Pb /〜(204)Pb)_i = 15.507至15.526,(〜(208)Pb /〜(204)Pb )_i = 37.775至37.795]和较高的K2O,Rb,以及锆石Hf同位素组成的较大差异(ε_(Hf)(t)= — 9.8至+5.0),表明该花岗岩源自古代下大陆壳。 CaO,P2O5,K2O / Na2O,Cr,Ni,Nb / Ta,Rb / Sr和Y增加,而SiO2,Sr / Y和Eu / Eu *随着MgO的增加而减少,这与原始埃达克质熔体和上覆地幔橄榄岩的相互作用一致。从宿主花岗岩中分离出的锆石的U-Pb共生年龄为214±2 Ma至222±2 Ma,与大别造山带中的三叠系UHP变质岩的掘出年龄兼容。与花岗岩相关的镁铁质微粒飞地和铁镁质岩脉具有相同的锆石。 U-Pb年龄为220 Ma,具有较低的SiO2,较高的TiO2,Mg#和类似的演化Sr-Nd-Pb同位素组成。镁铁质微颗粒飞地(MME)和铁镁质岩脉的锆石也显示出Hf同位素组成的大变化,ε_(Hf)(t)在-11.3和+11.3之间。据推测,它们是由富集地幔岩石圈的部分融化形成的,并被宿主的花岗岩质岩浆污染。结合区域地质,认为东江口地区高Mg#的花岗岩状花岗岩是俯冲的扬子陆壳与上覆地幔楔相互作用的结果。三叠纪的大陆碰撞引起了华北克拉通下方俯冲的扬子大陆岩石圈的脱离,大约在2005年。 220 Ma引起软流圈上升,并发掘了大陆壳。扬子克拉通的三叠纪顺时针旋转导致大别地区扩展,导致俯冲陆壳岩石圈迅速掘出,而秦岭地区压缩和俯冲陆壳产生的高铁的高磷局部融化(高闪石±石榴石稳定场)。与橄榄岩反应形成富含镁的混合岩浆的花岗岩岩浆。

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