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Trace element and isotope constraints on crustal anatexis by upwelling mantle melts in the North Atlantic Igneous Province : an example from the Isle of Rum, NW Scotland

机译:北大西洋火成岩省上地幔融化上升对地壳后遗物的痕量元素和同位素约束:以苏格兰西北部朗姆酒岛为例

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摘要

Sr and Nd isotope ratios, together with lithophile trace elements, have been measured in a representative set of igneous rocks and Lewisian gneisses from the Isle of Rum in order to unravel the petrogenesis of the felsic rocks that erupted in the early stages of Palaeogene magmatism in the North Atlantic Igneous Province (NAIP). The Rum rhyodacites appear to be the products of large amounts of melting of Lewisian amphibolite gneiss. The Sr and Nd isotopic composition of the magmas can be explained without invoking an additional granulitic crustal component. Concentrations of the trace element Cs in the rhyodacites strongly suggests that the gneiss parent rock had experienced Cs and Rb loss prior to Palaeogene times, possibly during a Caledonian event. This depletion caused heterogeneity with respect to 87Sr/86Sr in the crustal source of silicic melts. Other igneous rock types on Rum (dacites, early gabbros) are mixtures of crustal melts and and primary mantle melts. Forward Rare Earth Element modelling shows that late stage picritic melts on Rum are close analogues for the parent melts of the Rum Layered Suite, and for the mantle melts that caused crustal anatexis of the Lewisian gneiss. These primary mantle melts have close affinities to Mid-Oceanic Ridge Basalts (MORB), whose trace element content varies from slightly depleted to slightly enriched. Crustal anatexis is a common process in the rift-to-drift evolution during continental break-up and the formation of Volcanic Rifted Margins systems. The ‘early felsic–later mafic’ volcanic rock associations from Rum are compared to similar associations recovered from the now-drowned seaward-dipping wedges on the shelf of SE Greenland and on the Vøring Plateau (Norwegian Sea). These three regions show geochemical differences that result from variations in the regional crustal composition and the depth at which crustal anatexis took place.
机译:在朗姆酒岛的一组代表性火成岩和刘易斯片麻岩中,测量了Sr和Nd同位素比率以及嗜石微量元素,以揭示古近纪成岩作用早期喷发的长英质岩石的岩石成因。北大西洋火成岩省(NAIP)。朗姆酒Rhyodacites似乎是路易斯路易斯两性片麻岩大量熔化的产物。岩浆的Sr和Nd同位素组成可以解释,而无需调用额外的粒状地壳成分。假丝酵母中痕量元素Cs的浓度强烈表明,片麻岩母岩在古近纪时代之前可能经历过Cs和Rb损失,可能是在古苏格兰时期。相对于硅熔岩地壳源中的87Sr / 86Sr,这种耗竭引起了异质性。朗姆酒上的其他火成岩类型(达科特岩,早期辉长岩)是地壳熔体与原始地幔熔体的混合物。向前的稀土元素建模显示,朗姆酒的后期野餐融化物与朗姆酒分层套件的母体融化物以及导致刘易斯片麻岩地壳背壳的地幔融化物非常相似。这些主要的地幔熔体与中洋陆玄武岩(MORB)具有相似的亲和力,其微量元素含量从轻度贫化到轻度富集。在大陆分裂和火山裂谷边缘系统形成期间,地壳深层沉积是裂谷向漂移演化的一个普遍过程。将朗姆酒中的“早期长英质—晚期镁铁质”火山岩协会与从东南格陵兰岛陆架和Vøring高原(挪威海)现淹没的向海倾斜楔中恢复的类似协会进行了比较。这三个区域显示出地球化学差异,这是由于区域地壳成分和发生地壳深部变化的深度而引起的。

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