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首页> 外文期刊>Contributions to Mineralogy and Petrology >The role of crustal fertility in the generation of large silicic magmatic systems triggered by intrusion of mantle magma in the deep crust
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The role of crustal fertility in the generation of large silicic magmatic systems triggered by intrusion of mantle magma in the deep crust

机译:地幔岩浆侵入深地壳引发的地壳肥力在大型硅质岩浆系统生成中的作用

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摘要

The Sesia magmatic system of northwest Italy allows direct study of the links between silicic plutonism and volcanism in the upper crast and the coeval interaction of mafic intrusions with the deep crust. In this paper, we focus on the chemical stratigraphy of the pre-intrusion crust, which can be inferred from the compositions of crustal-contaminated mafic plutonic rocks, restitic crustal material incorporated by the complex, and granitic rocks crystallized from anatectic melts. These data sources independently indicate that the crust was compositionally stratified prior to the intrusion of an 8-km-thick gabbroic to dioritic body known as the Mafic Complex, with mica and K-feldspar abundance decreasing with depth and increasing metamorphic grade. Reconsideration of published zircon age data suggest that the igneous evolution initiated with sporadic pulses at around 295 Ma, when mafic sills intruded deep granulites which provided a minor amount of depleted crustal contaminant, very poor in LIL elements. With accelerated rates of the intrusion, between 292 and 286 m.y, mafic magmas invaded significantly more fertile, amphibolite-facies paragneisses, resulting in increased contamination and generating hybrid rocks with distinct chemistry. At this point, increased anatexis produced a large amount of silicic hybrid melts that fed the incremental growth of upper-crustal plutons and volcanic activity, while the disaggregated restite was largely assimilated once ingested by the growing Mafic Complex. This "igneous climax" was coincident with an increasing rate of intrusion, when the upper Mafic Complex began growing according to the "gabbro glacier" model and, at about the same time, volcanic activity initiated. Cooling lasted millions of years. In the coupled magmatic evolution of the deep and upper crast, the Mafic Complex should be considered more as a large reservoir of heat rather than a source of upper-crustal magma, while the fertility of "under/intra-plated" crast plays a crucial role in governing the generation of large volumes of continental silicic magmas.
机译:意大利西北部的Sesia岩浆系统可以直接研究上岩屑的硅质岩性与火山作用之间的联系,以及镁铁质侵入体与深地壳的同时代相互作用。在本文中,我们集中于侵入前地壳的化学地层学,这可以从受地壳污染的镁铁质深成岩,复合物掺入的复方地壳物质以及由高熔体熔体结晶的花岗石中推断出来。这些数据来源独立地表明,在8 km厚的辉长岩侵入到称为Mafic Complex的异闪闪体之前,地壳在成分上分层,云母和钾长石的丰度随深度减小而变质等级增加。对公开的锆石年龄数据的重新考虑表明,火成岩的演化始于零星的脉冲,大约在295 Ma,当时铁镁矿基岩侵入深层的粒状岩体,这些粒状岩体提供了少量的耗尽的地壳污染物,LIL元素非常贫乏。随着入侵速度的加快,在292至286 m。之间,铁镁质岩浆侵入了更多的肥沃的,角闪石相的石蜡,从而增加了污染,并生成了化学性质各异的混合岩石。在这一点上,增加的苯甲酸产生了大量的硅质杂化熔体,它们满足了上地壳岩体和火山活动的增量增长,而分解的钙钛矿一旦被生长的黑手党复合体吸收,就会被大量吸收。当上部的黑手党情结根据“ gabbro冰川”模型开始生长时,大约在同一时间开始了火山活动,这种“火成的高潮”与入侵速度的增加相吻合。冷却持续了数百万年。在深部和上部岩浆的耦合岩浆演化中,铁镁复合体应更多地被视为大型储热库,而不是上地壳岩浆的来源,而“下部/内部镀层”岩浆的肥力起着至关重要的作用。在控制大量大陆硅质岩浆的产生中起着重要作用。

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