Saintilan N J, Selby D, Hughes J W, Schlatter D, Kolb J, Boyce A
Department of Earth Sciences, University of Durham, Durham DH1 3LE, United Kingdom.
Department of Earth Sciences, Institute of Geochemistry and Petrology, ETH Zürich, Clausiusstraße 25, 8092 Zürich, Switzerland.
MethodsX. 2020 Jun 3;7:100944. doi: 10.1016/j.mex.2020.100944. eCollection 2020.
A temporal framework for mineral deposits is essential when addressing the history of their formation and conceptualizing genetic models of their origin. This knowledge is critical to understand how crust-forming processes are related to metal accumulations at specific time and conditions of Earth evolution. To this end, high-precision absolute geochronology utilising the rhenium-osmium (Re-Os) radiometric system in specific sulphide minerals is becoming a method of choice. Here, we present a procedure to obtain mineral separates of individual sulphide species that may coexist within specific mineralized horizons in ore deposits. This protocol is based on preliminary petrographic and paragenetic investigations of sulphide and gangue minerals using reflected and transmitted light microscopy. Our approach emphasizes the key role of a stepwise use of a Frantz isodynamic separator to produce mineral separates of individual sulphide species that are subsequently processed for Re-Os and sulphur isotope geochemistry.•Detailed method and its graphical illustration modified from an original procedure introduced by [1], [2].•Quality control and validation of monophasic mineral separates made by microscopic investigations and qualitative analysis of aliquots embedded in epoxy mounts.•The present method, which contributed to the successful results presented in the co-publication by Saintilan et al. (2020), demonstrates why other studies reporting Re-Os isotope data for mixtures of sulphide minerals should be considered with caution.
在研究矿床形成历史并构建其成因的概念模型时,矿床的时间框架至关重要。了解地壳形成过程如何在地球演化的特定时间和条件下与金属聚集相关,这种知识至关重要。为此,利用特定硫化物矿物中的铼 - 锇(Re - Os)放射性系统的高精度绝对地质年代学正成为一种首选方法。在此,我们提出一种程序,用于从可能共存于矿床特定矿化层位中的单个硫化物物种中获取矿物分离物。该方案基于使用反射光和透射光显微镜对硫化物和脉石矿物进行的初步岩相学和共生次序研究。我们的方法强调逐步使用弗兰兹等动力分离器来制备单个硫化物物种的矿物分离物的关键作用,这些分离物随后用于铼 - 锇和硫同位素地球化学分析。
•详细方法及其图形说明改编自[1]、[2]介绍的原始程序。
•通过显微镜研究和对嵌入环氧树脂块中的等分试样进行定性分析,对单相矿物分离物进行质量控制和验证。
•本方法促成了Saintilan等人(2020年)共同发表的成功结果,说明了为何应谨慎对待其他报告硫化物矿物混合物铼 - 锇同位素数据的研究。