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首页> 外文期刊>Journal of Metamorphic Geology >Ultrahigh-pressure eclogite transformed from mafic granulite in the Dabie orogen, east-central China
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Ultrahigh-pressure eclogite transformed from mafic granulite in the Dabie orogen, east-central China

机译:中国中东部大别造山带中镁铁质粒状岩转化的超高压榴辉岩

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Although ultrahigh-pressure (UHP) metamorphic rocks are present in many collisional orogenic belts, almost all exposed UHP metamorphic rocks are subducted upper or felsic lower continental crust with minor mafic boudins. Eclogites formed by subduction of mafic lower continental crust have not been identified yet. Here an eclogite occurrence that formed during subduction of the mafic lower continental crust in the Dabie orogen, east-central China is reported. At least four generations of metamorphic mineral assemblages can be discerned: (i) hypersthene + plagioclase +/- garnet; (ii) omphacite + garnet + rutile + quartz; (iii) symplectite stage of garnet + diopside + hypersthene + ilmenite + plagioclase; (iv) amphibole + plagioclase + magnetite, which correspond to four metamorphic stages: (a) an early granulite facies, (b) eclogite facies, (c) retrograde metamorphism of high-pressure granulite facies and (d) retrograde metamorphism of amphibolite facies. Mineral inclusion assemblages and cathodoluminescence images show that zircon is characterized by distinctive domains of core and a thin overgrowth rim. The zircon core domains are classified into two types: the first is igneous with clear oscillatory zonation +/- apatite and quartz inclusions; and the second is metamorphic containing a granulite facies mineral assemblage of garnet, hypersthene and plagioclase (andesine). The zircon rims contain garnet, omphacite and rutile inclusions, indicating a metamorphic overgrowth at eclogite facies. The almost identical ages of the two types of core domains (magmatic = 791 +/- 9 Ma and granulite facies metamorphic zircon = 794 +/- 10 Ma), and the Triassic age (212 +/- 10 Ma) of eclogitic facies metamorphic overgrowth zircon rim are interpreted as indicating that the protolith of the eclogite is mafic granulite that originated from underplating of mantle-derived magma onto the base of continental crust during the Neoproterozoic (c. 800 Ma) and then subducted during the Triassic, experiencing UHP eclogite facies metamorphism at mantle depths. The new finding has two-fold significance: (i) voluminous mafic lower continental crust can increase the average density of subducted continental lithosphere, thus promoting its deep subduction; (ii) because of the current absence of mafic lower continental crust in the Dabie orogen, delamination or recycling of subducted mafic lower continental crust can be inferred as the geochemical cause for the mantle heterogeneity and the unusually evolved crustal composition.
机译:尽管在许多碰撞造山带中都存在超高压(UHP)变质岩,但几乎所有裸露的UHP变质岩都被俯冲的上地壳或长英质的下陆壳俯冲了,并伴有少量铁镁质质体。尚未发现由镁铁质下部大陆壳俯冲形成的榴辉岩。据报道,在中国中东部大别造山带中镁铁质下大陆壳俯冲过程中形成了榴辉岩发生。至少可以辨认出四代变质矿物组合:(i)硫代锡+斜长石+/-石榴石; (ii)绿沸石+石榴石+金红石+石英; (iii)石榴石+透辉石+硫氰酸钠+钛铁矿+斜长石的合晶阶段; (iv)闪石+斜长石+磁铁矿,对应于四个变质阶段:(a)早期花岗石相,(b)榴辉岩相,(c)高压花岗石相的逆行变质和(d)角闪石相的逆行变质。矿物包裹体组合和阴极发光图像显示,锆石的特征是核心区域和稀疏的过度生长边缘。锆石核心区域分为两类:第一类为火成岩,具有清晰的振荡带状+/-磷灰石和石英包裹体。第二种是变质岩,其中含有石榴石,超粘晶石和斜长石(安地斯汀)的花岗石相矿物组合。锆石边缘含有石榴石,绿辉石和金红石夹杂物,表明在榴辉岩相上变质的过度生长。两种岩心区域的年龄几乎相同(岩浆= 791 +/- 9 Ma,粒岩相变质锆石= 794 +/- 10 Ma),三叠纪(Electrigitic)相变质时代(212 +/- 10 Ma)锆石边缘的过度生长被解释为表明该榴辉岩的原生岩是镁铁质花岗石,其起源于新元古代(约800 Ma)期间地幔幔源岩浆在大陆壳基底上的下覆,然后在三叠纪发生,经历了UHP榴辉岩地幔深处的相变质作用。这一新发现具有两方面的意义:(i)大量的镁铁质下部大陆壳可以增加俯冲大陆岩石圈的平均密度,从而促进其深层俯冲; (ii)由于大别造山带目前不存在镁铁质下部陆壳,因此可以推断俯冲的镁铁质下部陆壳的分层或再循环是地幔非均质性和异常演化的地壳成分的地球化学原因。

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