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Geophysical investigation of banded iron ore mineralization at Ero, North – Central Nigeria

机译:尼日利亚中北部埃罗州带状铁矿成矿的地球物理研究

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The banded iron ore mineralization at Ero was investigated using aeromagnetic, resistivity and induced polarization (IP) methods with the aim of characterizing the deposit. Analysis of the aeromagnetic data involved the application of reduced-to-equator transformation, derivative filters, analytic signal and source parameter imaging techniques. Computer modelling of some of the identified anomalies was undertaken. The electrical resistivity and IP methods helped in discriminating between the iron ore and the host rock. The results showed that the banded iron formations (BIFs) were characterized by spherical analytic signal anomalies ranging from 0.035 nT/m to 0.06 nT/m within the granite gneiss and magnetic susceptibility of 0.007-0.014 SI. The iron ore had low chargeability (0.1-5.0 msec) and resistivity (1.5 × 102 to 2.5 × 103 Ωm). Structural features trending in the NE-SW, E-W, and NW-SE were identified, suggesting that the area had undergone many episodes of tectonic events. Depth to the BIF varied from the surface up to about 200 m. The chargeability response of the iron bodies suggested an average grade of 20%-40%, making the prospect for economic exploitation attractive.
机译:为了表征矿床,使用航磁,电阻率和感应极化(IP)方法研究了Ero的带状铁矿石矿化。航空数据分析涉及到赤道变换,微分滤波器,分析信号和源参数成像技术的应用。对一些已发现的异常进行了计算机建模。电阻率和IP方法有助于区分铁矿石和基质岩石。结果表明,在花岗岩片麻岩中,球状解析信号异常的范围从0.035 nT / m到0.06 nT / m,磁化率为0.007-0.014 SI。铁矿石的带电能力低(0.1-5.0毫秒),电阻率低(1.5×10 2 至2.5×10 3 Ωm)。确定了NE-SW,E-W和NW-SE趋势的结构特征,这表明该地区经历了许多构造事件。 BIF的深度从地表到大约200 m不等。铁体的带电性响应表明平均品位为20%-40%,这使得经济开采的前景诱人。

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