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Chemical zoning and lattice distortion in uraninite from Olympic Dam, South Australia

机译:南澳大利亚奥林匹克大坝铀矿的化学分区和晶格畸变

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摘要

Compositionally zoned uraninite from the Olympic Dam iron oxide-copper-gold deposit is rarely preserved, but represents an early product of in situ transformation of primary uraninite. Electron backscatter diffraction data (inverse pole figure, image quality, and grain reference orientation deviation mapping) reveal formation of zoned uraninite to be the result of a sequence of superimposed effects rather than from primary growth mechanisms alone. This is the first known microstructural analysis of uraninite showing crystal-plastic deformation of uraninite via formation and migration of defects and dislocations into tilt boundaries. Defining grain-scale characteristics and microstructural features in radiogenically modified minerals like uraninite carries implications in better understanding the processes involved in their formation, highlights limitations in the use of uraninite for U-Pb chemical ages, as well as for constraining the incorporation and release of daughter radioisotopes, especially where zoning, porosity, fractures, and microstructures are present.
机译:奥林匹克大坝氧化铁-铜-金矿床中按成分划分的尿素岩很少保存,但代表了原生尿素岩原位转变的早期产物。电子反向散射衍射数据(反极图,图像质量和晶粒参考取向偏差图)显示,分区的尿素石的形成是一系列叠加效应的结果,而不是单独的主要生长机制。这是铀矿的第一个已知的微观结构分析,显示出铀矿通过缺陷的形成和迁移以及位错向倾斜边界的迁移而发生结晶塑性变形。定义放射变质矿物(如铀矿)中的晶粒度特征和微结构特征,对于更好地理解其形成过程具有重要意义,突出了在U-Pb化学年龄中使用铀矿的局限性,以及限制了铀的掺入和释放。子放射性同位素,特别是在存在分区,孔隙度,裂缝和微结构的地方。

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