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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Mineralogical and textural controls on spectral induced polarization signatures of the Canadian Malartic gold deposit: Applications to mineral exploration
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Mineralogical and textural controls on spectral induced polarization signatures of the Canadian Malartic gold deposit: Applications to mineral exploration

机译:Canadian Malartic Gold矿床光谱诱导极化签名的矿物学和纹理控制:矿产勘探申请

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摘要

Applications of the spectral induced polarization (SIP) method to mineral exploration are limited by our knowledge of the relationships among rock texture, mineral composition, and electrical properties. Laboratory SIP responses were measured on rock samples from the Canadian Malartic gold deposit. Field SIP responses were also measured at the outcrop scale, along a profile that intersects a well-studied mineralized zone. The mineralogy and the texture of sedimentary rocks from this deposit were quantitatively determined with mineral liberation analysis. A systematic decrease (Pearson r = -0.75) in total chargeability with increasing fraction of the sulfide mineral interfaces associated with feldspar minerals (namely, K-feldspar and albite) was observed. On the other hand, total chargeability increased with the fraction of sulfide mineral interfaces associated with carbonates and micas (Pearson r = 0.89). At Canadian Malartic, proximal alteration in the mineralized zones is marked by rocks that lack a foliation plane and that were subjected to pervasive K-feldspar, albite, and pyrite alteration. In contrast, distal alteration in sedimentary rocks is marked by biotite, albite, carbonate, and pyrite that are oriented along the regional S-2 foliation. In the least-altered (LA) sedimentary rocks, quartz and biotite are associated with pyrrhotite and ilmenite as the main sulfide and oxide mineral phases, respectively. SIP measurements conducted at district and outcrop scales and along a drill core indicated that proximally altered sedimentary rocks were characterized by low total chargeability values (0.27 +/- 0.01 to 0.42 +/- 0.02 in the laboratory and 0.21 +/- 0.04 in the field). In contrast, the LA sedimentary rocks were characterized by total chargeability values up to 0.72 +/- 0.07 in the laboratory and 0.38 +/- 0.06 in the field. We conclude that mineralized zones associated with this type of ore deposit are characterized by low chargeability anomalies.
机译:光谱诱导极化(SIP)方法对矿物勘探的应用受到我们对岩石纹理,矿物组合物和电性能之间的关系的知识的限制。从加拿大少年金矿床的岩石样品上测量实验室SIP响应。沿着与研究良好的矿化区相交的轮廓,还在露天度下测量了场SIP响应。从矿物解放分析定量测定来自该沉积物的矿物质和沉积岩的质地。观察到总带电总收费的系统减少(Pearson r = -0.75),随着与长石矿物质相关的硫化物矿物界面的增加(即,K-Feldspar和Albite)的分数增加。另一方面,随着与碳酸盐和云母相关的硫化物矿物界面的分数增加,总带电增加(Pearson r = 0.89)。在加拿大人群中,矿化区的近端改变由缺乏叶片平面的岩石标记,并且受到普形k-feldspar,albite和黄铁矿改变的岩石。相比之下,沉积岩中的远端改变标有沿着区域S-2叶面定向的Biotite,Albite,碳酸盐和黄铁矿。在最不改变的(La)沉积岩中,石英和Biotite分别与Pyrlotite和Ilmenite相关的分别作为主要硫化物和氧化物矿物相。在地区和露出尺度和钻孔芯中进行的SIP测量表明,近端改变的沉积岩的特征在于,在实验室中的总收费值低(0.27 +/- 0.01至0.42 +/- 0.02和0.21 +/- 0.04) )。相比之下,La沉积岩的特征在于实验室中的总带电值,高达0.72 +/- 0.07和该领域的0.38 +/- 0.06。我们得出结论,与这种类型的矿石沉积物相关的矿化区以低电平的异常的特征为例。

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