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Recycling lower continental crust in the North China craton

机译:回收华北克拉通的下陆壳

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Foundering of mafic lower continental crust into underlying convecting mantle has been proposed as one means to explain the unusually evolved chemical composition of Earth's continental crust(1,2), yet direct evidence of this process has been scarce. Here we report that Late Jurassic high-magnesium andesites, dacites and adakites ( siliceous lavas with high strontium and low heavy-rare-earth element and yttrium contents) from the North China craton have chemical and petrographic features consistent with their origin as partial melts of eclogite that subsequently interacted with mantle peridotite. Similar features observed in adakites and some Archaean sodium-rich granitoids of the tonalite-trondhjemite-granodiorite series have been interpreted to result from interaction of slab melts with the mantle wedge. Unlike their arc-related counterparts, however, the Chinese magmas carry inherited Archaean zircons and have neodymium and strontium isotopic compositions overlapping those of eclogite xenoliths derived from the lower crust of the North China craton. Such features cannot be produced by crustal assimilation of slab melts, given the high Mg#, nickel and chromium contents of the lavas. We infer that the Chinese lavas derive from ancient mafic lower crust that foundered into the convecting mantle and subsequently melted and interacted with peridotite. We suggest that lower crustal foundering occurred within the North China craton during the Late Jurassic, and thus provides constraints on the timing of lithosphere removal beneath the North China craton.
机译:有人提出将铁镁质下陆壳建立在对流的地幔中是解释地球陆壳化学成分异常演化的一种手段(1,2),但这一过程的直接证据很少。在这里我们报告说,华北克拉通晚侏罗世的高镁安山岩,辉石和ad石(高锶,低稀土元素和钇含量低的硅质熔岩)具有化学和岩石学特征,与它们的部分融化相一致。榴辉岩随后与地幔橄榄岩相互作用。在角闪石-长白云母-花岗岩闪长岩系列中,在akakite和一些古生的富含钠的花岗岩中观察到的相似特征,被解释为是板状熔体与地幔楔相互作用的结果。但是,与弧相关的对应物不同,中国岩浆携带着继承的古生锆石,并且钕和锶的同位素组成与华北克拉通下地壳产生的榴辉辉长岩异岩的重叠。考虑到熔岩的高Mg#,镍和铬含量,不能通过平板熔体的地壳同化来产生这样的特征。我们推断中国熔岩来自古老的镁铁质下部地壳,该地壳逐渐沉入对流的地幔中,随后与橄榄岩融化并相互作用。我们认为,侏罗纪晚期华北克拉通内部发生了较低的地壳倒塌现象,因此对华北克拉通下方岩石圈清除的时间提供了限制。

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