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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Element mobility in mafic and felsic ultrahigh-pressure metamorphic rocks during continental collision
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Element mobility in mafic and felsic ultrahigh-pressure metamorphic rocks during continental collision

机译:陆相碰撞过程中镁铁质和长英质超高压变质岩中的元素迁移

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摘要

In order to decipher element mobility in ultrahigh-pressure (UHP) eclogite-facies metamorphic rocks during subduction and exhumation of continental crust, major-trace elements and Sr-Nd isotopes were systematically investigated for two continuous core segments of about 3 m length from the Chinese Continental Scientific Drilling (CCSD) project in the Sulu orogen. The segments are composed of lithological transitions between UHP eclogite and granitic gneiss. The eclogite exhibits a large variation in major and some trace elements such as LILE (e.g., Rb, Ba and K) and LREE, but a relatively limited range in HFSE and HREE. This suggests high mobility of LILE and LREE but immobility of HFSE and HREE during continental collision-zone metamorphism. Some eclogites have andesitic compositions with high SiO2, alkalis, LREE, and LILE but low CaO, MgO and FeO contents. These features likely result from chemical exchange with gneisses, possibly due to the metasomatism of felsic melt produced by partial melting of the associated gneisses during the exhumation. On the other hand, some eclogites appear to have geochemical affinity to refractory rocks formed by melt extraction as evidenced by strong LREE and LILE depletion and the absence of hydrous minerals. These results provide evidence of melt-induced element mobility in the UHP metamorphic rocks. In particular, large variations in the abundance of such elements as SiO2, LREE and LILE occur at the contact between eclogite and granitic gneiss, indicating their mobility between different slab components. Petrographic observations also show the presence of felsic veins on small scales in the UHP metamorphic rocks, demonstrating the occurrence of hydrous melt in local open-systems during the continental collision. As a whole, nevertheless, the protolith nature dictates the geochemical differences in both eclogite and granitic gneiss between the two core segments because mass transport during the subduction-zone metamorphism is principally dictated by the lithological differences at contact. The eclogite and granitic gneiss from the first core segment have high epsilon(Nd)(t) values, whereas those from the second core segment show relatively low epsilon(Nd)(t) values in concordance with majority of UHP metaigneous rocks outcropped along the Dabie-Sulu orogenic belt. Thus contrasting origins of bimodal igneous rocks were involved in the continental collision, demonstrating that the subducted continental crust is the magmatic product of active rifting margin during supercontinental breakup in the middle Neoproterozoic. (c) 2007 Elsevier Ltd. All rights reserved.
机译:为了解释大陆壳俯冲和掘出过程中超高压(EHP)榴辉岩相变质岩中的元素迁移,系统地研究了两个主要岩心元素和Sr-Nd同位素,该两个连续岩心段的长度约为3 m。苏鲁造山带的中国大陆科学钻探(CCSD)项目。这些片段由UHP榴辉岩和花岗岩片麻岩之间的岩性转变组成。榴辉岩的主要和一些微量元素如LILE(例如Rb,Ba和K)和LREE表现出很大的变化,但是HFSE和HREE的范围相对有限。这表明在大陆碰撞区变质过程中,LILE和LREE具有较高的流动性,而HFSE和HREE具有较高的流动性。一些榴辉岩的安山岩成分具有较高的SiO2,碱,LREE和LILE,但CaO,MgO和FeO含量较低。这些特征可能是由于与片麻岩的化学交换而引起的,这可能是由于挖掘过程中相关片麻岩的部分熔融所产生的长英质熔体的交代作用。另一方面,某些榴辉岩似乎对由熔体萃取形成的难熔岩石具有地球化学亲和力,这可以通过强烈的LREE和LILE耗竭以及缺乏含水矿物来证明。这些结果为UHP变质岩中熔体诱导的元素迁移提供了证据。特别是,在榴辉岩和花岗岩片麻岩之间的接触处,SiO2,LREE和LILE等元素的丰度发生了很大的变化,表明它们在不同板状成分之间的流动性。岩石学观测还显示,UHP变质岩中小规模的长英质脉的存在,表明了大陆碰撞期间局部开放系统中含水融化的发生。总体而言,原生岩的性质决定了两个核心段之间榴辉岩和花岗岩片麻岩的地球化学差异,因为俯冲带变质过程中的质量输运主要是由接触时的岩性差异决定的。来自第一岩心段的榴辉岩和花岗片麻片具有较高的ε(Nd)(t)值,而来自第二岩心段的榴辉岩和花岗片麻岩具有相对较低的ε(Nd)(t)值,这与沿该岩层出露的大部分UHP亚火成岩一致大别苏鲁造山带。因此,在大陆碰撞中涉及了双峰火成岩的对比成因,表明俯冲的大陆壳是新元古代中期超大陆断裂过程中主动裂谷边缘的岩浆产物。 (c)2007 Elsevier Ltd.保留所有权利。

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