磁铁矿
热液循环
矿物氧化还原缓冲液
矽卡岩
微量元素
地质学
地球化学
矿床成因
石英
逸度
矿物学
流体包裹体
化学
地幔(地质学)
古生物学
地震学
物理化学
作者
Dante Canil,Carter Grondahl,Terri Lacourse,Laura K. Pisiak
标识
DOI:10.1016/j.oregeorev.2015.10.007
摘要
This study examines trace elements in hydrothermal magnetite from five porphyry Cu–Mo–Au deposits and two skarns in British Columbia, Canada. Trace element concentrations vary several orders of magnitude both within and between magnetite from skarn and porphyry deposit settings. The heterogeneous composition of hydrothermal magnetite may in part be due to the short duration, low temperature and multiple-fluid events that attend the formation of porphyry ore deposits. Principal component analysis shows two dominant patterns of trace element abundances in hydrothermal magnetite. Firstly, positive correlations of Ti, Al and V, which account for nearly 40% of the total variation in magnetite, are inferred to depend on temperature and oxygen fugacity. Secondly, antithetic abundances of lower valence cations (Co, Mn) with higher valence cations (Sn and Mo) may reflect variations in the redox potential, acidity and metal speciation of hydrothermal fluids. The Cu/Fe and Mn/Fe ratios calculated for fluids in equilibrium with the hydrothermal magnetite using experimental partitioning data are similar to those measured directly in brines trapped in quartz-hosted fluid inclusions from porphyry Cu–Mo–Au deposits.
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