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Geological Analysis of Aeromagnetic Data from Southwestern Alaska: Implications for Exploration in the Area of the Pebble Porphyry Cu-Au-Mo Deposit

机译:来自阿拉斯加西南部的航磁数据的地质分析:对卵石斑岩型铜金钼矿床地区的勘探意义

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摘要

Aeromagnetic data are used to better understand the geology and mineral resources near the Late Cretaceous Pebble porphyry Cu-Au-Mo deposit in southwestern Alaska. The reduced-to-pole (RTP) transformation of regional-scale aeromagnetic data shows that the Pebble deposit is within a cluster of magnetic anomaly highs. Similar to Pebble, the Iliamna, Kijik, and Neacola porphyry copper occurrences are in magnetic highs that trend northeast along the crustal-scale Lake Clark fault. A high-amplitude, short- to moderate-wavelength anomaly is centered over the Kemuk occurrence, an Alaska-type ultramafic complex. Similar anomalies are found west and north of Kemuk. A moderate-amplitude, moderate-wavelength magnetic low surrounded by a moderate-amplitude, short-wavelength magnetic high is associated with the gold-bearing Shotgun intrusive complex. The RTP transformation of the district-scale aeromagnetic data acquired over Pebble permits differentiation of a variety of Jurassic to Tertiary magmatic rock suites. Jurassic-Cretaceous basalt and gabbro units and Late Cretaceous biotite pyroxenite and granodiorite rocks produce magnetic highs. Tertiary basalt units also produce magnetic highs, but appear to be volumetrically minor. Eocene monzonite units have associated magnetic lows. The RTP data do not suggest a magnetite-rich hydrothermal system at the Pebble deposit. The 10-km upward continuation transformation of the regional-scale data shows a linear northeast trend of magnetic anomaly highs. These anomalies are spatially correlated with Late Cretaceous igneous rocks and in the Pebble district are centered over the granodiorite rocks genetically related to porphyry copper systems. The spacing of these anomalies is similar to patterns shown by the numerous porphyry copper deposits in northern Chile. These anomalies are interpreted to reflect a Late Cretaceous magmatic arc that is favorable for additional discoveries of Late Cretaceous porphyry copper systems in southwestern Alaska.
机译:航磁数据用于更好地了解阿拉斯加西南部晚白垩世卵石斑岩型铜金钼矿床附近的地质和矿产资源。区域尺度航磁数据的极简化(RTP)变换表明,卵石矿床位于磁异常高的簇中。与卵石相似,伊利亚姆纳(Iliamna),基吉克(Kijik)和尼古拉(Neacola)斑岩铜矿的磁高沿地壳尺度的克拉克湖断层向东北方向发展。高振幅,短至中波长的异常集中在阿拉斯加型超镁铁质复合体Kemuk发生的中心。在Kemuk的西部和北部也发现了类似的异常。中等振幅,中等波长的磁性低点被中等振幅,短波长的磁性高点包围,与含金gold弹枪侵入复合体有关。通过Pebble采集的地区规模航空数据的RTP转换可以区分各种侏罗纪至第三纪的岩浆岩组。侏罗纪-白垩纪玄武岩和辉长岩单元以及晚白垩纪黑云母辉石岩和花岗闪长岩均产生磁高。第三级玄武岩单位也产生磁高,但在体积上似乎较小。始新世蒙脱石单元具有相关的磁低点。 RTP数据未表明卵石矿床富含磁铁矿的热液系统。区域尺度数据的10 km向上连续转换显示了磁异常高的线性东北趋势。这些异常在空间上与晚白垩世火成岩有关,在圆石区中则集中在与斑岩铜系统遗传相关的花岗闪长岩上。这些异常的间距类似于智利北部众多斑岩铜矿床所显示的模式。这些异常被解释为反映了晚白垩纪的岩浆弧,这有利于在阿拉斯加西南部发现更多的晚白垩纪斑岩铜矿系统。

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