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首页> 外文期刊>Geochemistry: exploration, environment, analysis >The significance of copper concentrations in natural gold alloy for reconnaissance exploration and understanding gold-depositing hydrothermal systems
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The significance of copper concentrations in natural gold alloy for reconnaissance exploration and understanding gold-depositing hydrothermal systems

机译:天然金合金中铜浓度对勘查和了解金矿热液系统的意义

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Analytical studies of placer (detrital) gold grains, intended to track bedrock sources and styles of mineralization, mainly consider alloy Ag content and inclusion mineralogy to generate 'microchemical signatures'. Occasionally Hg and Pd help discriminate gold from different sources; Cu infrequently because electron microprobes seldom detect the low concentrations. Reporting of Cu has been largely confined to gold from porphyry-epithermal environments, and this has biased subsequent interpretations of observed Cu-bearing gold alloys. This study focuses on placer gold in the Mourne Mountains, Northern Ireland, where auriferous bedrock remains undiscovered and the complex geology is consistent with either orogenic or intrusion-related mineralization. Over 500 gold grains analysed average 0.17% Cu ranging to >1% Cu and show a wide variation in Ag content. Inclusion mineralogy mainly matches that of orogenic gold elsewhere in the host ter-rane; however, some signatures are suggestive of zonation within an orogenic hydro-thermal mineralizing system, or possibly metamorphic-hydrothermal remobilized gold associated with subsequent intrusive activity. One locality in the study area has placer gold of a distinctive Cu-rich alloy composition containing Cu sulphide inclusions, an association noted elsewhere in gold derived from alkali Cu-Au porphyries. Consideration of Cu-bearing gold alloys worldwide indicates that previously proposed compositional correlations with deposit type are of limited value. We show that Cu contents to at least 0.8% are permissible within orogenic gold - the first time that such compositions have been clearly ascribed to orogenic mineralization. The result is particularly important considering on-going exploration in northern Canada which employs gold grain analysis to help define exploration targets.
机译:旨在追踪基岩来源和矿化方式的砂金(碎屑)金矿的分析研究主要考虑合金Ag含量和夹杂物矿物学以产生“微化学特征”。汞和钯有时会帮助区分不同来源的黄金;由于电子微探针很少检测到低浓度的铜,因此很少使用。铜的报告主要限于斑岩表生环境中的金,这使随后对已观察到的含铜金合金的解释产生了偏差。这项研究的重点是北爱尔兰莫恩山的砂金,那里的金铁基岩尚未发现,复杂的地质与造山带或与侵入有关的成矿作用是一致的。分析的500多个金晶粒的平均Cu含量为0.17%,Cu含量> 1%,并且Ag含量变化很大。夹杂矿物学主要与宿主区域其他地方的造山金相匹配。然而,一些特征暗示着造山热液成矿系统中的带状化,或可能与随后的侵入活动有关的变质水热移动金。研究区域中的一个地方有含有独特的富含铜的合金成分的砂金,其中含有硫化铜夹杂物,这是在其他地方从碱性铜金斑岩中提取的金中的一种关联。对全世界含铜金合金的考虑表明,先前提出的与矿床类型的成分相关性价值有限。我们表明,造山金中的铜含量至少为0.8%是允许的-这是这种成分首次明确地归因于造山矿化。考虑到加拿大北部正在进行的勘探,该结果特别重要,该勘探采用金粒分析来帮助确定勘探目标。

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