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Tracing Mineral Reactions Using Confocal Raman Spectroscopy

机译:使用共聚焦拉曼光谱法追踪矿物反应

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Raman spectroscopy is a powerful tool used to identify mineral phases, study aqueous solutions and gas inclusions as well as providing crystallinity, crystallographic orientation and chemistry of mineral phases. When united with isotopic tracers, the information gained from Raman spectroscopy can be expanded and includes kinetic information on isotope substitution and replacement mechanisms. This review will examine the research to date that utilizes Raman spectroscopy and isotopic tracers. Beginning with the Raman effect and its use in mineralogy, the review will show how the kinetics of isotope exchange between an oxyanion and isotopically enriched water can be determined in situ. Moreover, we show how isotope tracers can help to unravel the mechanisms of mineral replacement that occur at the nanoscale and how they lead to the formation of pseudomorphs. Finally, the use of isotopic tracers as an in situ clock for mineral replacement processes will be discussed as well as where this area of research can potentially be applied in the future.
机译:拉曼光谱法是一种功能强大的工具,可用于识别矿物相,研究水溶液和气体夹杂物,并提供矿物相的结晶度,晶体学取向和化学性质。与同位素示踪剂结合使用时,可以扩展从拉曼光谱学获得的信息,并包括有关同位素取代和置换机理的动力学信息。这篇评论将审查迄今为止利用拉曼光谱和同位素示踪剂的研究。从拉曼效应及其在矿物学中的应用开始,该综述将显示如何就地确定氧阴离子和同位素富集水之间同位素交换的动力学。此外,我们展示了同位素示踪剂如何帮助揭示纳米级矿物质置换的机理以及它们如何导致假晶型的形成。最后,将讨论使用同位素示踪剂作为矿物替代过程的原位时钟,以及该研究领域将来有可能应用的地方。

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