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Magma Mixing Genesis of the Mafic Enclaves in the Qingshanbao Complex of Longshou Mountain, China: Evidence from Petrology, Geochemistry, and Zircon Chronology

机译:中国龙寿山青山堡群中镁铁质飞地的岩浆混合成因:岩石学,地球化学和锆石年代学的证据

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The Qingshanbao complex, part of the uranium metallogenic belt of the Longshou-Qilian mountains, is located in the center of the Longshou Mountain next to the Jiling complex that hosts a number of U deposits. However, little research has been conducted in this area. In order to investigate the origin and formation of mafic enclaves observed in the Qingshanbao body and the implications for magmatic-tectonic dynamics, we systematically studied the mineralogy, petrography, and geochemistry of these enclaves. Our results showed that the enclaves contain plagioclase enwrapped by early dark minerals. These enclaves also showed round quartz crystals and acicular apatite in association with the plagioclase. Electron probe analyses showed that the plagioclase in the host rocks (such as K-feldspar granite, adamellite, granodiorite, etc.) show normal zoning, while the plagioclase in the mafic enclaves has a discontinuous rim composition and shows instances of reverse zoning. Major elemental geochemistry revealed that the mafic enclaves belong to the calc-alkaline rocks that are rich in titanium, iron, aluminum, and depleted in silica, while the host rocks are calc-alkaline to alkaline rocks with enrichment in silica. On Harker diagrams, SiO 2 contents are negatively correlated with all major oxides but K 2 O. Both the mafic enclaves and host rock are rich in large ion lithophile elements such as Rb and K, as well as elements such as La, Nd, and Sm, and relatively poor in high field strength elements such as Nb, Ta, P, Ti, and U. Element ratios of Nb/La, Rb/Sr, and Nb/Ta indicate that the mafic enclaves were formed by the mixing of mafic and felsic magma. In terms of rare earth elements, both the mafic enclaves and the host rock show right-inclined trends with similar weak to medium degrees of negative Eu anomaly and with no obvious Ce anomaly. Zircon LA-ICP-MS (Laser ablation inductively coupled plasma mass spectrometry) U-Pb concordant ages of the mafic enclaves and host rock were determined to be 431.8 ± 5.2 Ma (MSWD (mean standard weighted deviation) = 1.5, n = 14) and 432.8 ± 4.2 Ma (MSWD = 1.7, n = 16), respectively, consistent with that for the zircon U-Pb ages of the granite and medium-coarse grained K-feldspar granites of the Qingshanbao complex. The estimated ages coincide with the timing of the late Caledonian collision of the Alashan Block. This comprehensive analysis allowed us to conclude that the mafic enclaves in the Qingshanbao complex were formed by the mixing of crust-mantle magma with mantle-derived magma due to underplating, which caused partial melting of the ancient basement crust during the collisional orogenesis between the Alashan Block and Qilian rock mass in the early Silurian Period.
机译:青山宝综合体是龙首-七连山铀成矿带的一部分,位于龙首山的中心,毗邻拥有大量铀矿床的吉陵综合体。但是,在这一领域很少进行研究。为了调查在青山宝矿体中发现的镁铁质飞地的起源和形成以及对岩浆构造动力学的影响,我们系统地研究了这些飞地的矿物学,岩石学和地球化学。我们的结果表明,这些飞地含有早期深色矿物包裹的斜长石。这些飞地还显示出与斜长石有关的圆形石英晶体和针状磷灰石。电子探针分析表明,宿主岩石中的斜长石(如钾长石花岗岩,凹凸棒石,花岗闪长岩等)显示出正常的带状分布,而黑手质飞地中的斜长石具有不连续的边缘成分,并显示出反向带状的情况。主要元素地球化学表明,镁铁质飞地属于钙-碱性岩石,富含钛,铁,铝,并富含二氧化硅,而基质岩为钙-碱性,而碱性岩石富含二氧化硅。在Harker图上,SiO 2含量与所有主要氧化物呈负相关,但与K 2 O呈负相关。镁铁质飞地和基质岩石均富含大型离子亲石元素,例如Rb和K,以及La,Nd和La等元素。 Sm,并且在高场强元素(如Nb,Ta,P,Ti和U)中相对较差。Nb/ La,Rb / Sr和Nb / Ta的元素比表明,镁铁质飞地是由铁镁质混合形成的和长岩浆。就稀土元素而言,镁铁质飞地和母岩均显示右倾趋势,负Eu异常程度从弱到中度相似,而Ce异常则不明显。锆石LA-ICP-MS(激光烧蚀电感耦合等离子体质谱法)确定了铁镁质飞地和主体岩石的U-Pb一致年龄为431.8±5.2 Ma(MSWD(平均标准加权偏差)= 1.5,n = 14)分别为432.8±4.2 Ma(MSWD = 1.7,n = 16),与青山堡综合体的花岗岩和中粗粒钾长石花岗岩的锆石U-Pb年龄一致。估计年龄与阿拉善地块晚古苏格兰碰撞的时间一致。通过综合分析,我们可以得出结论,青山堡复合体中的镁铁质飞地是由于地幔下沉引起的地幔-岩浆与地幔衍生岩浆的混合而形成的,这导致了阿拉善之间碰撞造山过程中古代基底壳的部分熔融。志留纪初期的地块和祁连岩体。

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