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Petrogenesis of granitoids in the eastern section of the Central Qilian Block : evidence from geochemistry and zircon U-Pb geochronology.

机译:祁连中段东段花岗岩的成岩作用:来自地球化学和锆石U-Pb年代学的证据。

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摘要

The Caledonian-age Qilian Orogenic Belt at the northern margin of the Greater Tibetan Plateau comprises abundant granitoids that record the histories of the orogenesis. We report here our study of these granitoids from two localities. The Qingchengshan (QCS) pluton, which is situated in the eastern section of the Central Qilian Block, is dated at ~430–420 Ma. It has high-K calc-alkaline composition with high SiO2 (> 70 wt%), enrichment in large ion lithophile elements (LILEs), depletion in high field strength elements (HFSEs), and varying degrees of negative Sr and Eu anomalies. The granitoids in the Tongwei (TW) area, 150 km east of the QCS, are complex, the majority of which are dated at ~440 Ma, but there also exist younger, ~230 Ma intrusions genetically associated with the Qinling Orogeny. The Paleozoic TW intrusions also have high SiO2, fractionated REE (rare earth element) patterns, but a negligible Eu anomaly. The whole rock Sr-Nd-Hf isotopic compositions suggest that all these Paleozoic granitoids are consistent with melting-induced mixing of a two-component source, which is best interpreted as the combination of last fragments of subducted/subducting ocean crust with terrigenous sediments. The mantle isotopic signature of these granitoids (87Sr/86Sri: 0.7038 to 0.7100, εNd(t): −4.8 to −1.3, εHf(t): −0.7 to +4.0) reflects significant (~70 %) contribution of the ocean crust derived in no distant past from the mantle at ocean ridges with an inherited mantle isotopic signature. Partial melting of such ocean crust plus terrigenous sediments in response to the ocean closing and continental collision (between the Qilian and Alashan Blocks) under amphibolite facies conditions is responsible for the magmatism. Varying extents of fractional crystallization (±plagioclase, ±amphibole, ±garnet, ±zircon) of the parental magmas produced the observed QCS and TW granitoids. We note that sample HTC12–01 in the TW area shows an A-type or highly fractionated granite signature characterized by elevated abundances and a flat pattern of REEs, weak Nb-Ta anomaly, conspicuous negative Sr and Eu anomalies (Sr/Sr* = 0.09, Eu/Eu* = 0.22), and thus the high 87Sr/86Sr ratio (0.7851), and moderate εNd(t) (−4.9) and εHf(t) (−2.0), pointing to the significant mantle contribution. Compared with the Paleozoic granitoids, the ~230 Ma granitoids in the TW area represented by sample JPC12–02 have higher initial 87Sr/86Sr (0.7073) and lower εNd(t) (−6.2) and εHf(t) (−4.5) values, offering an ideal opportunity for future studies on tectonic effects of juxtaposition of younger orogenesis on an older orogen.
机译:大青藏高原北缘的加里东时期的祁连造山带包括丰富的花岗岩,记录了造山运动的历史。我们在这里报告了我们对来自两个地方的这些类花岗岩的研究。青城山(QCS)岩体位于祁连中部地块的东部,日期为〜430-420 Ma。它具有高SiO2(> 70 wt%)的高K钙碱性成分,富集大型离子亲石元素(LILE),高场强元素(HFSE)耗尽以及不同程度的负Sr和Eu异常。 QCS以东150公里处的通渭(TW)地区的花岗石很复杂,其中大多数定于〜440 Ma,但也存在与秦岭造山带遗传相关的年轻的〜230 Ma侵入体。古生代TW侵入体也具有较高的SiO2,高分率的REE(稀土元素)图案,但是Eu异常可以忽略不计。整个岩石Sr-Nd-Hf同位素组成表明,所有这些古生代花岗岩都与熔融诱导的两组分源混合相一致,这最好解释为俯冲/俯冲洋壳的最后碎片与陆源沉积物的组合。这些花岗岩的地幔同位素特征(87Sr / 86Sri:0.7038至0.7100,εNd(t):-4.8至-1.3,εHf(t):-0.7至+4.0)反映了大洋地壳的重要贡献(〜70%)源自遥远的洋脊地幔,具有继承的地幔同位素特征。在洋闪石相条件下,由于海底封闭和大陆碰撞(祁连和阿拉善块之间),这种洋壳和陆源沉积物的部分融化是造成岩浆作用的原因。亲本岩浆的不同程度的分级结晶(±斜长石,±amphibole,±石榴石,±锆石)产生了观察到的QCS和TW花岗岩。我们注意到,TW地区的HTC12-01样品显示出A型或高分度的花岗岩特征,其特征是丰度提高和REE呈扁平状,Nb-Ta异常弱,Sr和Eu负异常明显(Sr / Sr * = 0.09,Eu / Eu * = 0.22),因此较高的87Sr / 86Sr比(0.7851),以及适度的εNd(t)(-4.9)和εHf(t)(-2.0),表明地幔贡献很大。与古生代花岗岩相比,由样本JPC12-02代表的TW区〜230 Ma花岗岩具有较高的初始87Sr / 86Sr(0.7073)和较低的εNd(t)(-6.2)和εHf(t)(-4.5)值,为将来对年轻造山带并置对老造山带的构造作用提供了理想的机会。

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