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Composition and evolution of ore fluids in a magmatic-hydrothermal skarn deposit

机译:岩浆热液矽卡岩矿床流体的组成与演化

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摘要

The chemistry of brine, vapor, and low-salinity fluid inclusions measured by proton-induced X-ray emission from the Bismark skarn deposit, Mexico, is consistent with an evolving magmatic-hydrothermal system with no evidence for external fluid inputs. The results support a model that invokes early phase separation of magmatic fluids into brine and vapor (two-phase field) at high temperature and lithostatic pressure, followed by the entrapment of a low-salinity magmatic fluid (one-phase field) at lower temperature and hydrostatic pressure. The early brine and vapor inclusions contain high Pb and Zn concentrations and low Cu; however, the vapor contains significantly more Cu than the brine and was likely transported as a sulfur complex. The fluid phase changes observed and behavior of Cu are comparable to those of porphyry Cu systems. The later, low-salinity fluid at Bismark represents a distinct pulse of magmatic fluid with a high K/Ca ratio in which base metals, including Cu, were transported by chloride complexes. Paragenetic relationships and variations in the relative concentrations of Cu, Pb, and Zn suggest that this fluid was primarily responsible for ore deposition. The relative Cu, Pb, and Zn concentrations in fluid inclusions at Bismark are consistent with those measured from base-metal ores in high-temperature carbonate- replacement deposits throughout Mexico, and suggest that the bulk-metal budget of these deposits is primarily controlled by magmatic-hydrothermal fluids deficient in Cu.
机译:墨西哥Bismark矽卡岩 矿床的质子诱导X射线发射所测量的盐水,蒸气和低盐度流体包裹体的化学性质与演化的岩浆相一致-hydrothermal 系统,没有外部流体输入的证据。结果 支持一个模型,该模型在高温 和岩石静压力下将岩浆 流体早期分离成盐水和蒸汽(两相场) ,然后在较低的温度和静水压下捕获低盐度 岩浆流体(单相场)。早期的盐水和蒸气中的夹杂物含有较高的 Pb和Zn浓度以及较低的Cu。但是,蒸气中的 比盐水中的铜要多得多,并且很可能作为硫络合物运输。观察到的液相变化和铜的行为与斑岩型铜系统相当。后来在Bismark的 低盐度流体代表了具有高K / Ca比的 岩浆流体的独特脉冲,其中贱金属, 包括铜通过氯化物络合物运输。 Cu,Pb和Zn的共生关系 以及相对浓度 的变化表明,这种流体主要负责 矿石的沉积。 Bismark流体包裹体中的相对Cu,Pb和Zn浓度 与在高温碳酸盐置换中从贱金属矿石中测量的 一致 整个墨西哥的矿床,并表明这些矿床的大块金属 预算主要受缺乏铜的岩浆热液 流体控制。

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  • 来源
    《Geology》 |2004年第2期|00000117-00000120|共4页
  • 作者单位

    Economic Geology Research Unit, School of Earth Sciences, James Cook University, Townsville, Queensland 4812, Australia;

    Commonwealth Scientific and Industrial Research Organisation, Exploration and Mining, P.O. Box 136, North Ryde, New South Wales 2113, Australia;

    Commonwealth Scientific and Industrial Research Organisation, Exploration and Mining, P.O. Box 136, North Ryde, New South Wales 2113, Australia;

    Lang Geoscience, 10556 Suncrest Drive, Delta, British Columbia V4C 2N5, Canada;

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