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首页> 外文期刊>Interpretation >Near-surface geophysical surveys at the Duport gold deposit,Ontario, Canada: Relating airborne responses to small-scale geologic features
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Near-surface geophysical surveys at the Duport gold deposit,Ontario, Canada: Relating airborne responses to small-scale geologic features

机译:加拿大安大略省杜波特金矿床的近地表地球物理调查:将空中响应与小规模地质特征联系起来

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摘要

Near-surface geophysical measurements using magnetometer, magnetic susceptibility, terrain conductivity, and time-domain electromagnetic instruments were made at the shear-hosted Duport gold deposit on Cameron Island in Shoal Lake, western Ontario, Canada, to help relate airborne total magnetic intensity (TMI) and helicopter electromagnetic survey data to small-scale geologic features. The magnetic airborne response provides a weak indication of a narrow anomaly within the Duport deformation zone, and the airborne electromagnetic response provides an indication of enhanced conductivity in the northwest of Cameron Island. In contrast, surface magnetic responses are dominated by the narrow 10,000-15,000 nT magnetic anomaly of a talc-chlorite- dolomite schistose basalt unit, a feature barely visible in the airborne TMI data. This geologic unit hosts the veins containing gold mineralization, so the surface TMI data provide a valuable response for delineating the corresponding rocks. Modeling of the TMI data indicates that the unit has a susceptibility of up to 0.7 SI and a corresponding magnetite content of up to 20%. The TMI data also reveal along-strike variations in the magnetic anomaly providing information on the component of ultramafic rocks in the protolith of the unit. The surface geophysical data allow the enhanced conductivity in the northwest part of Cameron Island to be attributed to several narrow sulfidized zones containing up to 10% pyrrhotite. Additional conductive and positively magnetized zones are associated with concentrations of 5%-10% of magnetite. The near-surface geophysics at the Duport deposit provided a rapid and inexpensive method for defining the magnetic and electrical properties of the geologic units at the site and for defining the exact location, width, and internal structure of features observed in the airborne geophysical data. Availability of magnetic susceptibility measurements from a single drill core enhanced the accuracy of the interpretations and the ability to relate the near-surface geophysical responses to geologic features.
机译:使用磁力计,磁化率,地形电导率和时域电磁仪器在加拿大西部安大略省Shoal Lake的Cameron岛上由剪切带动的Duport金矿床进行了近地表地球物理测量,以帮助关联空中总磁强度( TMI)和直升机电磁勘测数据,以获取小型地质特征。磁性空气传播响应提供了在Duport变形带内狭窄异常的微弱指示,而空气传播电磁响应提供了在喀麦隆岛西北部电导率增强的指示。相比之下,滑石-亚氯酸盐-白云岩片岩玄武岩单元的狭窄10,000-15,000 nT磁异常主导了表面磁响应,这一特征在机载TMI数据中几乎看不到。该地质单元拥有包含金矿化作用的矿脉,因此地面TMI数据为描绘相应的岩石提供了有价值的响应。 TMI数据的建模表明该单元的磁化率最高为0.7 SI,相应的磁铁矿含量最高为20%。 TMI数据还揭示了沿磁异常的沿走向变化,从而提供了有关该单元原石中超镁铁质岩石成分的信息。地表地球物理数据使得金马仑岛西北部电导率的提高归因于几个含有高达10%磁黄铁矿的窄硫化带。额外的导电和正磁化区域与磁铁矿的5%-10%的浓度有关。杜波特矿床的近地表地球物理提供了一种快速而廉价的方法,用于定义现场地质单元的磁和电特性,以及定义在航空地球物理数据中观测到的特征的确切位置,宽度和内部结构。单个钻芯的磁化率测量值的可用性提高了解释的准确性,并使近地表地球物理响应与地质特征相关联的能力得以提高。

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