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Assessing Inheritance of Zircon and Monazite in Granitic Rocks from the Monashee Complex, Canadian Cordillera

机译:评估加拿大堇青石莫纳什群中花岗岩中锆石和独居石的遗传

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摘要

Zircon and monazite from granitic sheets and dikes in the Monashee complex, Canadian Cordillera, were investigated to determine whether igneous crystallization occurred at 1.9 Ga or 50 Ma with 1.9 Ga inherited zircon and monazite. Four of the five samples are weakly deformed to undeformed, despite occurring in a gneiss dome at the structurally deepest exposed level of the orogen that elsewhere was strongly deformed and partly melted at 50 Ma. Based on U-(Th)-Pb dates from zircon and monazite, field relationships, and mineral composition and zoning, we conclude that the granitic rocks crystallized at 1.9 Ga and were metamorphosed at 50 Ma. All dated zircon is 1.9 Ga (except for 2.3-2.0 Ga inherited cores) and 1.9 Ga monazite comprises u3e90% of the population in four samples. The remainder of the monazite is 50 Ma and all monazite in one sample is 50 Ma. Composition and zoning of 1.9 Ga zircon and monazite are uniform within samples, yet differ between samples, indicating growth from 1.9 Ga magmas that are unique to each sample. This relationship is unlikely if the grains are inherited because the host rocks are heterogeneous 2.3-2.1 Ga gneisses. The 1.9 Ga zircon and monazite have zoning that is consistent with growth from magmas, whereas the 50 Ma monazite has variable composition and zoning that suggest growth from diverse metamorphic fluids. The results demonstrate that part of the Monashee complex was last strongly deformed and partly melted at 1.9 Ga, and thus largely escaped Cordilleran tectonism.
机译:研究了加拿大科迪勒拉州Monashee矿区花岗岩层和堤坝中的锆石和独居石,以确定在1.9 Ga或50 Ma与1.9 Ga继承的锆石和独居石上是否发生火成结晶。尽管发生在造山带穹顶中造山带中结构最深的暴露水平,而其他地方发生了强烈变形并在50 Ma时发生了部分融化,但五个样品中的四个却微弱变形至未变形。根据锆石和独居石中的U-(Th)-Pb年代,田间关系,矿物组成和地带划分,我们得出结论:花岗岩岩在1.9 Ga时结晶,并在50 Ma时变质。所有标有日期的锆石均为1.9 Ga(除了2.3-2.0 Ga继承的核),并且在四个样本中1.9 Ga独居石占总人口的90%。独居石的其余部分为50 Ma,一个样品中所有独居石均为50 Ma。样品中1.9 Ga锆石和独居石的组成和分区均一,但样品之间有所不同,这表明每个样品特有的1.9 Ga岩浆均有所增长。如果籽粒是遗传的,则这种关系是不可能的,因为主岩是不均匀的2.3-2.1 Ga片麻岩。 1.9 Ga锆石和独居石具有与岩浆生长一致的分区,而50 Ma独居石具有可变的组成和分区,表明从多种变质流体中生长。结果表明,Monashee配合物的一部分在1.9 Ga处最后发生了强烈变形并部分熔化,因此很大程度上逃脱了Cordilleran构造运动。

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