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Major element variation of the Skaergaard pyroxene and its petrologic implications

机译:Skaergaard辉石的主要元素变化及其岩石学意义

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摘要

Pyroxenes from the Layered Series (LS), Upper Border Series (UBS), and Marginal Border Series (MBS) of the Skaergaard intrusion were analyzed using electron microprobe and mineral separation techniques to examine geochemical variations. In general, pyroxenes from all three series show similar trends in major elements vs % crystallization: SiO_2, MgO, Al_2O_3, and TiO_2 progressively decrease, FeO and MnO progressively increase, and CaO, Fe_2O_3, and P_2O_5 do not change systematically with differentiation. Pyroxenes in the LS and MBS follow a trend similar to that reported by Wager and Brown. The estimated crystallization temperatures closely follow the general trends of published temperature estimates. Major element variation in Skaergaard pyroxenes shows smooth variations with increasing differentiation, indicating that there was no volumetrically significant injection of new magma into the chamber after the initial emplacement. These results strongly support the idea that the Skaergaard intrusion represents in situ crystallization under a closed system magma chamber.
机译:使用电子探针和矿物分离技术分析了Skaergaard入侵的分层系列(LS),上部边界系列(UBS)和边缘边界系列(MBS)中的辉石。总的来说,这三个系列中的辉石在主要元素与结晶百分比上都显示出相似的趋势:SiO_2,MgO,Al_2O_3和TiO_2逐渐减少,FeO和MnO逐渐增加,而CaO,Fe_2O_3和P_2O_5不会随分化而系统地变化。 LS和MBS中的辉石遵循与Wager和Brown报道的趋势相似的趋势。估计的结晶温度与公布的温度估计的总体趋势密切相关。 Skaergaard辉石中的主要元素变化显示出随着变化的增加而发生的平滑变化,这表明在初始放置之后,没有新的岩浆在体积上有明显的注入腔室。这些结果有力地支持了Skaergaard侵入代表在封闭系统岩浆室下原位结晶的想法。

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