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Magmatic and Crustal Differentiation History of Granitic Rocks from Hf-0 Isotopes in Zircon

机译:锆石中Hf-0同位素对花岗岩岩石的岩浆和地壳分异历史

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Granitic plutonism is the principal agent of crustal differentiation, but linking granite emplacement to crust formation requires knowledge of the magmatic evolution, which is notoriously difficult to reconstruct from bulk rock compositions. We unlocked the plutonic archive through hafnium (Hf) and oxygen (O) isotope analysis of zoned zircon crystals from the classic hornblende-bearing (I-type) granites of eastern Australia. This granite type forms by the reworking of sedimentary materials by mantle-like magmas instead of by remelting ancient metamorphosed igneous rocks as widely believed, l-type magmatism thus drives the coupled growth and differentiation of continental crust.
机译:花岗岩成岩作用是地壳分异的主要推动力,但是将花岗岩的位置与地壳的形成联系起来需要了解岩浆的演化,众所周知,岩浆的演化很难从大量的岩石成分中重建出来。我们通过对澳大利亚东部经典角闪石(I型)花岗岩中带状锆石晶体的((Hf)和氧(O)同位素分析,解锁了古生界档案。这种花岗岩类型是通过地幔状岩浆对沉积物的再加工而不是通过重熔古代变质的火成岩而形成的,L型岩浆作用因此推动了地壳的耦合生长和分化。

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