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Nb/Ta systematics in arc magma differentiation and the role of arclogites in continent formation

机译:Nb / Ta系统学在弧岩浆分化中的作用及弧石在大陆形成中的作用

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摘要

The surfaces of rocky planets are mostly covered by basaltic crust, but Earth is unique in that it also has extensive regions of felsic crust, manifested in the form of continents. Exactly how felsic crust forms when basaltic magmas are the dominant products of melting the mantles of rocky planets is unclear. A fundamental part of the debate is centered on the low Nb/Ta of Earth’s continental crust (11–13) compared to basalts (15–16). Here, we show that during arc magma differentiation, the extent of Nb/Ta fractionation varies with crustal thickness with the lowest Nb/Ta seen in continental arc magmas. Deep arc cumulates (arclogites) are found to have high Nb/Ta (average ~19) due to the presence of high Nb/Ta magmatic rutiles. We show that the crustal thickness control of Nb/Ta can be explained by rutile saturation being favored at higher pressures. Deep-seated magmatic differentiation, such as in continental arcs and other magmatic orogens, is thus necessary for making continents.
机译:岩石行星的表面大部分被玄武质地壳覆盖,但地球的独特之处在于它还具有广泛的长质地壳区域,以大陆的形式表现出来。尚不清楚玄武岩浆是融化岩石行星地幔的主要产物时,长质地壳是如何形成的。辩论的基本部分集中在与玄武岩(15-16)相比,地球大陆壳的低Nb / Ta(11-13)。在这里,我们表明,在弧岩浆的分化过程中,Nb / Ta分馏的程度随地壳厚度的变化而变化,其中大陆弧岩浆中的Nb / Ta最低。由于存在高Nb / Ta岩浆金红石,发现深弧堆积物(弧闪石)具有高Nb / Ta(平均〜19)。我们证明了Nb / Ta的地壳厚度控制可以通过在较高压力下有利于金红石饱和来解释。因此,深部岩浆分异,例如在大陆弧和其他岩浆造山带中,是形成大陆所必需的。

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