一种识别金伯利岩/煌斑岩矿床金刚石潜力的新岩矿学方法

Dr. Sergei Simakov Ph.D., Yury Stegnitskiy Ph.D.
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引用次数: 1

摘要

利用总化学分析和单氧测温法,对含金刚石和无金刚石金伯利岩中钻石和异种晶体中榴石包裹体的P-T-氧逸度(fO2)条件和流体组成进行了估算。我们的数据表明,钻石生长和保存的最佳条件发生在假定的富含水的地幔流体中,其中含有最低丰度的自由原子碳。高钻石品位金伯利岩橄榄岩捕虏体中金刚石形成的大部分C-H-O流体组成对应于高氢、低碳、低氧原子百分比流体,而低品位金伯利岩橄榄岩捕虏体中的大部分C-H-O流体组成对应于低氢、高碳、低氧原子百分比流体。这种新方法确定了金伯利岩矿床的钻石形成条件。与以往的经验矿物学Ca-Cr方法相比,该方法能更好地表征金伯利岩中的金刚石品位,可作为一种更精确的金伯利岩金刚石矿床找矿的矿物学-岩石学方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A new pyrope-based mineralogical-petrological method for identifying the diamond potential of kimberlite/lamproite deposits

A new pyrope-based mineralogical-petrological method for identifying the diamond potential of kimberlite/lamproite deposits

P-T- Oxygen fugacity (fO2) conditions and fluid compositions were estimated for the formation conditions of pyrope garnet inclusions in diamonds and xenocrysts from diamond-bearing and diamond-free kimberlites using their total chemical analyses and single oxythermobarometry. Our data indicate that optimal conditions for diamond growth and preservation occur in the presumed water-rich mantle fluids containing the lowest abundance of free atomic carbon. The majority of the calculated C-H-O fluid compositions for diamond formation in peridotite xenoliths from high diamond grade kimberlites correspond to a high hydrogen and low carbon and oxygen atomic fluid percents, while those from the majority of peridotite xenoliths in the low grade diamond kimberlites corresponds to the low hydrogen, high carbon and oxygen atomic percent fluids. This new approach defines the conditions of diamond formation for kimberlitic deposits. It better characterizes diamond grades in kimberlites in comparison to the previous empirical mineralogical Ca-Cr methods and can be used as a more precise mineralogical-petrological method for prospecting for kimberlitic diamond deposits.

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