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首页> 外文期刊>Contributions to Mineralogy and Petrology >An integrated microtextural and chemical approach to zircon geochronology: refining the Archaean history of the Napier Complex, east Antarctica
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An integrated microtextural and chemical approach to zircon geochronology: refining the Archaean history of the Napier Complex, east Antarctica

机译:锆石年代学的综合微观结构和化学方法:完善南极东部纳皮尔综合体的古细菌历史

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Integrated textural and chemical characterisation of zircon is used to refine the U-Pb geochronology of the Archaean, ultra-high temperature Napier Complex, east Antarctica. Scanning electron microscope characterisation of zircon and the rare earth element compositions of zircon, garnet and orthopyroxene are integrated to place zircon growth in an assemblage context, thereby providing tighter constraints on the timing of magmatic and metamorphic events. Data indicate that magmatism occurred in the central and northern Napier Complex at ca. 2,990 Ma. A regional, relatively low-pressure metamorphic event occurred at ca. 2,850-2,840 Ma. Mineral REE data from garnet-bearing orthogneiss indicate that ca. 2,490-2,485 Ma U-Pb zircon ages provide an absolute minimum age for the ultrahigh temperature (UHT) foliation preserved in this rock. Internal zircon zoning relationships and estimated zircon-garnet D-REE values from paragneiss suggest that an absolute minimum age of ultra-high temperature metamorphism is ca. 2,510 Ma, but that it is more likely to be older than ca. 2,545 Ma. We suggest that the high proportion of published zircon U-Pb data with ages between ca. 2,490-2,450 Ma reflects late, post-peak zircon growth and does not date the timing of peak UHT metamorphism.
机译:锆石的综合结构和化学表征用于完善南极东部古生界超高温纳皮尔综合体的U-Pb年代学。锆石的扫描电子显微镜表征以及锆石,石榴石和邻苯二酚的稀土元素组成被整合在一起,以使锆石的生长处于集合背景下,从而对岩浆和变质事件的发生时间提供了更严格的限制。数据表明,岩浆作用发生在中部和北部的纳皮尔复合体。 2990马。大约一个区域发生了一个相对低压的区域性变质事件。 2,850-2,840毫安。含石榴石直生片岩的矿物REE数据表明,约有。 2,490-2,485 Ma的U-Pb锆石年龄为岩石中保存的超高温(UHT)叶片提供了绝对最小年龄。内部锆石的分区关系和估计的锆石-石榴石D-REE值表明,超高温变质的绝对最小年龄为。 2,510 Ma,但可能比ca. 2,545毫安。我们建议,年龄介于大约20岁到25岁之间的已发布锆石U-Pb数据比例很高。 2,490-2,450 Ma反映了锆石峰值后的后期生长,并且没有确定UHT变质高峰的时间。

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