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首页> 外文期刊>Contributions to Mineralogy and Petrology >Isotopic responses to basaltic injections into silicic magma chambers: a whole-rock and microsampling study of macrorhythmic units in the Pleasant Bay layered gabbro-diorite complex, Maine, USA
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Isotopic responses to basaltic injections into silicic magma chambers: a whole-rock and microsampling study of macrorhythmic units in the Pleasant Bay layered gabbro-diorite complex, Maine, USA

机译:玄武岩注入硅质岩浆室的同位素响应:美国缅因州宜人海湾层状辉长岩-闪长岩复合体中宏观节律单元的整体岩石和微采样研究

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摘要

The Pleasant Bay layered gabbro-diorite complex (420 Ma) formed via repeated injections of mafic magma into a felsic magma chamber. It is dominated by repeating sequences (macrorhythmic units) with chilled gabbroic bases which may grade upward into medium-grained gabbro, diorite and granite. Each unit represents an injection of mafic magma into the chamber followed by differentiation. Increases in Sri and decreases in εNdi with stratigraphic height indicate open-system isotopic behaviour and exchange between the mafic and felsic magmas. Isotopic variations of whole-rock samples in individual macrorhythmic units do not conform to bulk mixing or AFC models between potential parental magmas. Sr isotopic studies of single feldspar crystals from one macrorhythmic unit indicate that exchange of crystals between the resident felsic magma and mafic influxes was important, that some of the rocks contain feldspar xenocrysts, and that the rocks are isotopically heterogeneous on an intercrystal scale. Xenocryst abundance increases with stratigraphic height, suggesting that crystal exchange occurred in situ. The lack of disequilibrium textures in the xenocrystic feldspar indicates the evolved macrorhythmic magma and resident silicic magma were of a similar composition and likely in thermal equilibrium at the time of crystal transfer. Mafic chilled margins are enriched in alkalis and isotopically evolved compared with mafic dikes (representing the parental melts) and suggest rapid in-situ diffusional exchange following emplacement of individual mafic replenishments.
机译:宜人的海湾层状辉长岩-闪长岩复合体(420 Ma)是通过将镁铁质岩浆反复注入到长岩质岩浆室内形成的。它是由重复的序列(宏观节律性单位)和冷的辉长岩基底所主导,这些基底可能会逐渐升级为中等粒度的辉长岩,​​闪长岩和花岗岩。每个单元代表将镁铁质岩浆注入室内,然后进行区分。随着地层高度的增加,Sri 的增加和εNdi的减少表明了基性岩浆和长质岩浆的开放系统同位素行为和交换。单个宏观节律单元中全岩石样品的同位素变化不符合潜在父母岩浆之间的整体混合或AFC模型。对来自一个大型节律单元的单个长石晶体的Sr同位素研究表明,长生岩浆岩浆和镁铁质涌入之间的晶体交换非常重要,某些岩石含有长石异晶,并且这些岩石在晶间尺度上是同位素异质的。 Xenocryst的丰度随地层高度的增加而增加,表明晶体交换发生在原位。异晶长石缺乏不平衡结构,表明演化的大节律岩浆和常驻硅质岩浆具有相似的成分,并且在晶体转移时可能处于热平衡状态。与铁镁质堤坝(代表母体熔体)相比,铁镁质冷态边缘富含碱金属和同位素演化,并暗示着在放置单个铁镁质补给品后迅速进行原位扩散交换。

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