首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Different melting conditions and petrogenesis of peraluminous granites in western Qinling, China, and tectonic implications
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Different melting conditions and petrogenesis of peraluminous granites in western Qinling, China, and tectonic implications

机译:中国秦岭,中国和构造影响的不同熔化条件和泛脉型花岗岩

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摘要

The Qinling orogen records the prolonged amalgamation history between the North China Block (NCB) and the South China Block (SCB) accompanied by major granitoid intrusions during the Triassic. However, the petrogenesis of these granitoids, especially that of the peraluminous granites, remains a matter of debate. Detailed study of these peraluminous granites, which are the products of crustal melting, will give insights into the melting process and petrogenesis of peraluminous magmas and will further constrain the regional geological evolution. In this study, Xiahe (XH) tourmaline-bearing two-mica granite and Baijiazhuang (BJZ) two-mica granite were selected for systematic analysis of their mineralogy, petrology, zircon U-Pb geochronology, and geochemistry. The zircon U-Pb dating showed that the XH and BJZ granites were emplaced at approximately 242 Ma and approximately 214 Ma, respectively. The presence of muscovite and tourmaline, high peraluminosity at >1.1, low oxygen fugacity (fO(2)) conditions below the fayalite-magnetite-quartz (FMQ) buffer, and low zircon saturation temperatures indicate sedimentary protolith (S-type) granitic affinity. The low CaO/Na2O ratios <0.4 suggest that the granites formed by partial melting of a pelitic source. The low heavy rare earth element (HREE) concentration and weak negative Eu anomaly in the XH granite implies garnet residue in the magma source, whereas an obvious Eu anomaly in the BJZ granite indicates no residual garnet. The Rb/Sr ratios remained constant in the XH granite with decreasing Sr and Ba concentrations; however, these ratios increased in the BJZ granite. This observation reflects that the XH (BJZ) granite was the product of fluid-present (fluid-absent) muscovite melting. This finding is in accord with the different geochemical features and the estimates of zircon and monazite saturation temperature between the XH and BJZ granites. In western Qinling, low-Sr/high-REE (group A) and high-Sr/low-REE (group B) peraluminous granites have been identified. We propose that the former were generated during fluid-absent muscovite melting, whereas the latter were derived from fluid-present muscovite melting. This hypothesis was further confirmed by higher zircon and monazite saturation temperature estimates in addition to higher REE, Th, Nb, and Ta concentrations in the group A granitoids. From regional geological considerations, it can be concluded that the Middle Triassic granitoids in western Qinling formed during subduction of the A'nimaqing-Mianlue oceanic crust, whereas the Late Triassic granitoids are related to syn- or post-collisional processes. (C) 2019 Elsevier B.V. All rights reserved.
机译:秦岭奥格因记录了华北地区(NCB)和南中国块(SCB)之间的长期合并历史,伴随着三叠杆菌期间的主要造成痕迹。然而,这些花岗岩的纤维化,尤其是衰弱花岗岩,仍然是辩论问题。对这些灭菌花岗岩的详细研究,即地壳融化的产品,将为吹入岩浆的熔化过程和细胞化进行洞察,并进一步限制区域地质演变。在这项研究中,Xiahe(XH)携带的携带的Tairimaline-携带的双云母花岗岩和Baijiazhuang(BJZ)两云母花岗岩进行了系统分析,用于其矿物学,岩石学,锆石U-PB地理学和地球化学。锆石U-PB序列显示XH和BJZ花岗岩分别在约242mA和约214 mA的大约242 mA下施加。在镁盐 - 磁铁矿 - 石英(FMQ)缓冲液(FMQ)缓冲液低于氧化镁(2))条件下,低呼吸道,高尿素率,高呼吸致氢,低氧逃逸度(FO(2))条件,低锆石饱和温度表示沉积促果实(S型)花岗岩亲和力。低CaO / Na2O比<0.4表明花岗岩通过部分熔化而形成的Pelitic来源。 XH花岗岩中低重的稀土元素(HREE)浓度(HREE)浓度和弱阴性EU异常在岩浆源中意味着石榴石残留物,而BJZ花岗岩中明显的EU异常表明没有残留的石榴石。 XH花岗岩中的RB / SR比率仍然是恒定的,降低Sr和BA浓度;然而,这些比率在BJZ花岗岩中增加。该观察结果反映了XH(BJZ)花岗岩是流体存在(流体缺失)Muscovite熔化的产物。这一发现符合XH和BJZ花岗岩之间的不同地球化学特征和锆石和单一饱和温度的估计。在西秦岭,已识别出低SR /高雷(A组)和高级SR /低雷(B组)灭菌花岗岩。我们提出前者在流体缺席的Muscovite熔化过程中产生,而后者源自流体存在的莫斯科熔融。除了较高的REE,TH,Nb和TA浓度下,还通过较高的REE,TH,NB和TA浓度进一步证实该假设。从区域地质考虑中,可以得出结论,在A'Nimaqing-Mianlue海底俯冲期间形成的中西秦岭中的中间三叠杆菌花岗岩,而晚期三叠层的造约型与碰撞过程有关。 (c)2019年Elsevier B.V.保留所有权利。

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