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首页> 外文期刊>Precambrian Research >Geochronology and geochemistry of the late Paleoproterozoic aluminous A-type granite in the Xiaoqinling area along the southern margin of the North China Craton: Petrogenesis and tectonic implications
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Geochronology and geochemistry of the late Paleoproterozoic aluminous A-type granite in the Xiaoqinling area along the southern margin of the North China Craton: Petrogenesis and tectonic implications

机译:华北克拉通南缘小秦岭地区晚元古生代铝质A型花岗岩的年代学和地球化学:成因及构造意义

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The occurrence of extensional-related A-type granites with a high-K nature in some early Precambrian blocks hints a possible link with the orogeny, and may imply the ending of the orogenic processes and the beginning of craton stabilization. The newly recognized late Paleoproterozoic A-type granite, the Guijiayu pluton composed of monzogranites in the Xiaoqinling area of the southern margin of the North China Craton (NCC), is a promising locus to investigate the late Paleoproterozoic tectonic evolution of the NCC. LA-ICP-MS zircon U-Pb dating shows that the Guijiayu pluton was emplaced at similar to 1.80 Ga. Petrologically, the Guijiayu granites contain perthite, annite and calcic amphibole but are lack of alkali mafic minerals. Geochemically, all the rocks are enriched in silicon and total alkali, and depleted in MgO, CaO and P2O5, with high FeOt/MgO, TiO2/MgO and 10,000 Ga/Al ratios and high HFSEs (i.e., Zr, Nb, Ce, Y) concentrations, as well as negative Eu, Sr, P and Ti anomalies. They are also characterized by high melting temperatures and metaluminous to weakly peraluminous natures. Taken together, the Guijiayu granites show an affinity to aluminous A-type granite. Their geochemical characteristics (e.g., obviously negative Eu and Sr anomalies), along with the low zircon epsilon(Hf)(t) values (-13.9 to -7.0) and whole-rock epsilon(Nd)(t) values (-5.81 to -5.65), indicate that the Guijiayu aluminous A-type granite was derived from partial melting of the crustal talc-alkaline granitoids dominated by the granodiorite of the Taihua Group in the study area. Combined with the regional data, especially for the identification of the clockwise P-T paths of Paleoproterozoic metamorphism in the southern margin of the NCC, even coeval granites and regional retrograde metamorphism in other areas in the NCC, it is most likely that the peak of continent-continent collision had finished in the study area at least before similar to 1.80 Ga, and that the generation of the Guijiayu aluminous A-type granite was related to the underplating of mafic magmas in a post-collisional regime. (C) 2016 Elsevier B.V. All rights reserved.
机译:在某些前寒武纪块体中,发生了与扩张有关的高钾质A型花岗岩,这暗示了与造山运动的可能联系,并可能暗示造山过程的结束和克拉通稳定的开始。新近认可的晚古元古代A型花岗岩,由华北克拉通(NCC)南缘小秦岭地区的孟子花岗岩组成的桂家yu岩体,是研究晚古元古代构造演化的有前途的地点。 LA-ICP-MS锆石的U-Pb测年表明,贵家yu岩体的位置接近1.80 Ga。从岩石学上看,贵家yu花岗岩中含有辉石,闪铁矿和钙闪石,但缺乏碱性镁铁质矿物。从地球化学上讲,所有岩石都富含硅和总碱,并且贫化了具有高FeOt / MgO,TiO2 / MgO和10,000 Ga / Al比和HFSE(即Zr,Nb,Ce,Y)的MgO,CaO和P2O5 )浓度,以及负Eu,Sr,P和Ti异常。它们的特征还在于高熔化温度和金属至弱铝的性质。两者合计,桂家yu花岗岩对铝质A型花岗岩具有亲和力。它们的地球化学特征(例如,Eu和Sr异常明显为负),以及较低的锆石epsilon(hf)(t)值(-13.9至-7.0)和整岩epsilon(Nd)(t)值(-5.81至-5.65),表明桂家yu A型铝质花岗岩是由研究区域内以太华集团的花岗闪长岩为主的滑石-碱性花岗岩的部分熔融而得。结合区域数据,尤其是为了识别NCC南缘古元古代变质的顺时针PT路径,甚至是NCC其他地区的同代花岗岩和区域逆行变质,极有可能是研究区至少在接近1.80 Ga之前已经完成了一次大陆碰撞,并且在碰撞后的过程中,桂家the铝质A型花岗岩的生成与镁铁质岩浆的下伏有关。 (C)2016 Elsevier B.V.保留所有权利。

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