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首页> 外文期刊>International Geology Review >Geochemistry and petrogenesis of Triassic mineralized porphyries in the Geza of the Sanjiang orogenic belt, southwestern China
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Geochemistry and petrogenesis of Triassic mineralized porphyries in the Geza of the Sanjiang orogenic belt, southwestern China

机译:三江奥根菌带,中国西南部地球化学和岩浆地球化学与岩化性

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摘要

The Geza Andean-type arc is located in the southwestern Sanjiang tectonic belt (i.e. Jinsha, Lancang, and Nujiang River) of SW China, which is a product of the subduction of the Garze-Litang oceanic crust beneath Zhongdian landmasses in the Late Triassic (235-204Ma). The Geza Andean-type arc is an important belt of Cu-rich polymetallic mineralization that was recently discovered in China. Prolonged regional tectono-magmatic activity and several episodes of rich mineralization throughout the tectonic evolution of the Andean-type arc produced the super-large Pulang porphyry Cu deposits, the large Xuejiping porphyry Cu deposits, and the large Hongshan skarn-porphyry Cu polymetallic deposits. Here we report new LA-ICP-MS zircon U-Pb age of Songnuo and Qiansui intrusive rocks, and whole-rock major and trace element compositions of the Late Triassic mineralized porphyries from Geza in this region. Zircon U-Pb dating of the Qiansui quartz diorite porphyrite revealed a crystallization age of 220.3 +/- 0.66Ma, for the Songnuo quartz monzonite porphyry, a crystallization age of 204.7 +/- 0.72Ma. The Geza Andean-type arc granitic belt can be divided into three porphyry subzones based on the stage of Andean-type arc orogenic development and the distribution, composition, and geochemical characteristics of the intrusive rocks. Lithogeochemical characteristics show that the porphyry and Andean-type arc granite are of the same rock series (high-K calc-alkaline) and genetic type (I-type granite). The trace element geochemistry of these rocks is similar to that of Andean-type arc granite, which is enriched in Ba, Rb, La, Hf, chalcophile elements (Cu, Pb), and siderophile elements (Mo, Ni), and depleted in Nb, Ta, P, and Ti. In the Geza Andean-type arc, similarities in the major element, REE, and trace element compositions between porphyry and local acidic volcanic rocks suggest that they have the same or similar magmatic source rocks. The petrological characteristics of granite in the Geza Andean-type arc are similar to those of adakitic rocks, and the formation of porphyry and porphyry-related deposits resulted from magmatic hydrothermal fluids that originated in the upper mantle and lower crust. The porphyry Cu mineralization was probably produced from the accumulation and migration of ore-forming hydrothermal fluids and the resultant alteration of host rocks.
机译:Geza Andean-型Arc位于Sw China的三江构造皮带(即金沙,兰康和Nujiang River),这是中甸陆地郊区的加泽海洋地壳俯冲的产品( 235-204ma)。 Geza Andean-型弧是富含Cu的多金属矿化的重要腰带,最近在中国发现。延长的区域构造 - 岩浆活动和在安第斯矶型弧的构造演进过程中较丰富的矿化发作产生了超大型柱状斑岩Cu沉积物,大山卟啉铜矿沉积物,以及大的宏山矽粉斑岩铜多金属沉积物。在这里,我们向该地Geza举报松诺和Qiansui侵入性岩石和Qiansui侵入性岩石的新洛杉矶U-PB年龄,以及来自该地区的Geza。 Zircon U-PB Qiansui石英Diorite Porphyrite揭示了220.3 +/- 0.66mA的结晶年龄,用于Songnuo Quartz Monzonite斑岩,结晶年龄为204.7 +/- 0.72mA。 Geza Andean型弧形花岗岩带可以基于Andean型弧造山发育的阶段和侵入式岩石的分布,组成和地球化学特征分为三个斑岩子区。石灰种化学特性表明,斑岩和Andean型弧花岗岩具有相同的岩石系列(高k钙碱)和遗传型(I型花岗岩)。这些岩石的微量元素地球化学类似于Andean型弧花岗岩的地质化学,其富含Ba,Rb,La,HF,碳酸化合物(Cu,Pb)和悬垂的元素(Mo,Ni)和耗尽Nb,ta,p和ti。在Geza Andean型弧形中,主要元素,Ree和痕量元素组合物中的主要元素和局部酸性火山岩岩石的相似性表明它们具有相同或相似的岩石源岩。 Geza Andean-型弧中花岗岩的岩石学特征类似于粘液岩,并且斑岩和斑骨相关沉积物的形成是由源于上部套道和下壳体的岩浆水热流体产生。斑岩Cu矿化可能由形成水热流体的积累和迁移产生和所得的主体岩石的改变。

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