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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Constraints on the timing of multiple thermal events and re-equilibration recorded by high-U zircon and xenotime: Case study of pegmatite from Pilawa Goma (Gory Sowie Block, SW Poland)
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Constraints on the timing of multiple thermal events and re-equilibration recorded by high-U zircon and xenotime: Case study of pegmatite from Pilawa Goma (Gory Sowie Block, SW Poland)

机译:关于高U锆和Xenotime记录的多热事件和重新平衡的限制:帕拉瓦戈马(Gory Sowie Block,SW Poland)的Pegmatite的案例研究

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摘要

The application of zircon and xenotime geochronometers requires knowledge of their potential and limitations related to possible disturbance of the age record. The alteration of the intergrown zircon and xenotime in pegmatite from the Gory Sowie Block (SW Poland) was studied using the electron microprobe analysis, X-ray WDS compositional mapping, micro-Raman analysis, and LA-ICP-MS U-Pb dating of zircon and xenotime, as well as the U-Th-total Pb dating of uraninite. These microanalytical techniques were applied to understand the formation mechanisms of the secondary textures related to post-magmatic processes in the zircon and xenotime intergrowth, and to constrain their timing. Textural and compositional features combined with U-Pb data indicate that the pegmatite-related crystallization of the zircon and xenotime intergrowth occurred ca. 2.09 Ga (2086 +/- 35 Ma for zircon and 2093 +/- 52 Ma for xenotime), followed by the re-equilibration of zircon and xenotime ca. 370 Ma (373 +/- 18 Ma and 368 +/- 6 Ma, respectively) during the formation of the younger pegmatite. The zircon and xenotime were most likely derived from Precambrian basement rocks and emplaced in the pegmatite as a restite. The zircon preserved textures related to diffusion-reaction processes that affected its high-U core (up to ca. 9.6 wt% UO2), which underwent further metamictization and amorphization due to self radiation damage. The zircon rim and xenotime were affected by coupled dissolution-reprecipitation processes that resulted in patchy zoning, age disturbance and sponge-like textures. Xenotime was also partially replaced by fluorapatite or hingganite-(Y) and Y-enriched allanite-(Ce). The termination of the low-temperature alteration was constrained by the U-Th-total Pb age of the uraninite inclusions that crystallized in zircon at 281 +/- 2 Ma, which is consistent with the age of 278 +/- 15 Ma obtained from the youngest cluster of U-Pb ages in the re-equilibrated high-U zircon domains. This study demonstrates the importance of the careful examination of compositional, microtextural and geochronological data obtained using microanalytical techniques to reconstruct the complex thermal histories recorded by accessory minerals. (C) 2018 Elsevier B.V. All rights reserved.
机译:锆石和XENOTIME地球节的应用需要了解其与年龄记录可能的扰动有关的潜在和限制。使用电子微探测分析,X射线WDS成分映射,微拉曼分析和La-ICP-MS U-PB进行了从血吉素块(SW波兰)的蛋白质血抗肠血小板和卵晶中的改变锆石和Xenotime,以及铀岩的U-Th-Total PB约会。应用这些微量化技术以了解锆石和Xenotime融合中岩石工艺相关的二次纹理的形成机制,并限制它们的时序。与U-PB数据相结合的纹理和组成特征表明锆石和XENOTime融合的彼得石相关结晶发生了CA. 2.09 GA(2086 +/- 35 mA for zircon和Xenotime的2093 +/- 52 mA),然后重新平衡Zircon和Xenotime Ca.在较年轻的Pegmatite形成期间,370 mA(373 +/- 18 mA和368 +/- 6 mA)。锆石和Xenotime最有可能从预先印记地下室岩石中衍生出来并将Pegmatite作为reatite所淘汰。锆石保存与扩散反应过程相关的纹理,这些过程影响其高U核(高达约9.6wt%UO2),其遭受了自辐射损伤的进一步的计识化和非形态化。锆石轮辋和Xenotime受到偶联的溶解 - 再沉淀过程的影响,导致斑块分区,年龄干扰和海绵状纹理。 Xenotime也被氟磷灰石或恒烷酸盐 - (Y)和Y富含含量的丙酸盐 - (CE)部分代替。低温改变的终止受到铀矿夹杂物的U-TH-总含量的约束,该铀酸盐含量在281 +/- 2 mA处结晶,这与从中获得的278岁+/- 15 mA一致重新平衡的高U锆域域中最年轻的U-PB年龄集群。本研究表明了使用微量分析技术获得的仔细检查组成,微小横绪和地质古学数据的重要性,以重建辅助矿物记录的复杂热历史。 (c)2018 Elsevier B.v.保留所有权利。

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