首页> 外文期刊>Acta geologica Sinica: Journal of the Geological Society of China >Determination of the Neoproterozoic Shicaogou Syn-collisional Granite in the Eastern Qinling Mountains and Its Geological Implications
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Determination of the Neoproterozoic Shicaogou Syn-collisional Granite in the Eastern Qinling Mountains and Its Geological Implications

机译:东秦岭新元古代石槽沟同碰撞花岗岩的确定及其地质意义

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摘要

The Shicaogou granite has been identified as a magnesian (Fe-number=0.71-0.76), calcic to calc-alkalic (MALI=3.84-5.76) and peraluminous (ASI=1.06-1.13) granite of the syn-collisional S-type, with high SiO_2 (>71 percent), Al_2O_3 (>13 percent) and Na_2O+K_2O (6.28 percent-7.33 percent, equal for NaO_2 and K_2O). Trace element and REE analyses show that the granite is rich in LILE such as of Rb, Sr, Ba and Th, and poor in HFSE like Yb, Y, Zr and Hf. Its Rb/Sr ratio is greater than 1; the contents of Nb and Ta, and the ratio of Nb/Ta as well as the REE geochemical features (e.g. REE abundance, visible fractionation of LREE and HREE and medium to pronounced negative Eu anomalies) are all similar to those of crust-origin, continent-continent syn-collisional granite. Moreover, the granite exhibits almost the same pattern as that of the typical continent-continent syn-collisional granite on the spider diagram and all samples fall within the syn-collisional granite field. The cathodoluminescence (CL) investigations have revealed that the zircon from the Shicaogou granite represents a typical magmatic product characterized by its colorless, transparent and euhedral crystals, and distinct zoning of oscillatory bands. Residual cores of irregular zircon can be found in a few enhedral grains. Trace element studies of the zircon grains, with high contents of P, Y, Hf, Th, U and REE and high ratios of Th/U, obviously positive Ce anomalies and HREE enrichment compared to LREE, also result in the same conclusion. The LA-ICP-MS U-Pb isotopic data from 24 spots of 21 zircon grains demonstrate that 20 spots in the oscillatory zone yield an average weighted ~(206)Pb/~(238)U age of 925+-11 Ma, indicating that the Shicaogou granite was formed in the Neoproterozoic. Combined with other Neoproterozoic syn-collisional granites found in the study area, the present geochronological determination can further reveal that collision-amalgamation events could have occurred among some continental blocks in the Qinling orogenic belt during the Neoproterozoic. This in turn provides an accurate chronological constraint on the Neoproterozoic break-up and convergence in the belt.
机译:石草沟花岗岩已被确定为镁质(Fe数= 0.71-0.76),钙质至钙碱性(MALI = 3.84-5.76)和高铝质(ASI = 1.06-1.13)花岗岩,属于同碰撞型S型,具有较高的SiO_2(> 71%),Al_2O_3(> 13%)和Na_2O + K_2O(6.28%-7.33%,与NaO_2和K_2O相等)较高。微量元素和稀土元素分析表明,该花岗岩富含LILE,如Rb,Sr,Ba和Th,而HFSE较差,如Yb,Y,Zr和Hf。其Rb / Sr比大于1; Nb和Ta的含量,Nb / Ta的比例以及REE地球化学特征(例如REE丰度,LREE和HREE的可见分馏以及中等至明显的负Eu异常)都与地壳起源相似,大陆-大陆同碰撞花岗岩。此外,花岗岩在蜘蛛图上表现出与典型的大陆-大陆同碰撞花岗岩几乎相同的模式,所有样品均落入同碰撞花岗岩领域。阴极发光(CL)研究表明,石草沟花岗岩中的锆石代表一种典型的岩浆产品,其特征在于其无色,透明和自体的晶体,并且具有明显的振荡带分区。不规则锆石的残留核可在一些半透明颗粒中找到。与LREE相比,P,Y,Hf,Th,U和REE含量高,Th / U比高,Ce异常明显和HREE富集的锆石晶粒的微量元素研究也得出相同的结论。来自21个锆石晶粒的24个斑点的LA-ICP-MS U-Pb同位素数据表明,振荡带中的20个斑点产生的平均加权〜(206)Pb /〜(238)U年龄为925 + -11 Ma,表明认为石草沟花岗岩形成于新元古代。结合在该研究区发现的其他新元古代同碰撞花岗岩,目前的地质年代学测定结果可以进一步揭示,在新元古代期间,秦岭造山带的某些大陆块之间可能发生了碰撞融合事件。反过来,这为该带的新元古代分裂和收敛提供了准确的时间约束。

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