DETEKSI ZONA MINERALISASI EMAS DI GUNUNG GUPIT, MAGELANG MENGGUNAKAN METODE INDUCED POLARIZATION

Yatini, Muhammad Faizal Zakaria, R. Putri, Suharwanto Zakaria
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Abstract

Mount Gupit is an area with gold mineralization potential which is part of the Menoreh Mountains, in the Magelang area. Mineralization potential mapping was carried out using geophysics, namely the Induced Polarization method. Induced Polarization Method measurements were carried out in 5 trajectories in a relatively west to east direction and with varying path lengths. The configuration used is a dipole-dipole configuration with a: 10 meters and n: 1-6. Interpretation is carried out on the results of the Resistivity and Chargeability data inversion. The inversion results show a resistivity range from 2 to 400 Ohm-m. Resistivity values are divided into three criteria, namely low with a value of less than 10 Ohm-m as clay rock, medium with a range of (10-75) Ohm-m as pyroclastic breccia and high with a value greater than 75 Ohm-m as intrusion or chunks of andesite. The inversion results show that the chargeability value varies from 2 to 80 ms. This value is divided into three criteria, namely low (<10 ms), medium (10 to 35) ms and high (>35 ms). Low chargeability values are interpreted as zones that are not mineralized so that there are no metal minerals. The mineralized zone is being interpreted from a moderate chargeability value. Meanwhile, a high chargeability value is interpreted as a zone that is strongly mineralized and contains significant metallic minerals. The existence of a mineralized zone stretches from track 2 to track 5 to the north, while the zone has disappeared or been exhausted in track 1 to the south of the research area.
利用诱导极化法探测马格朗古比特山的金矿化区
古比特山是一个具有金矿化潜力的地区,是马格朗地区梅诺雷山脉的一部分。矿化潜力测绘是利用地球物理方法,即诱导极化法进行的。诱导极化法测量在相对自西向东方向的 5 条轨迹上进行,轨迹长度各不相同。使用的配置是偶极子-偶极子配置,a:10 米,n:1-6:10 米,n:1-6。对电阻率和电荷率数据反演结果进行了解释。反演结果显示电阻率范围为 2 至 400 欧姆-米。电阻率值分为三个标准,即低值(小于 10 欧姆-米)为粘土岩,中值(10-75) 欧姆-米为火成碎屑角砾岩,高值(大于 75 欧姆-米)为侵入岩或大块安山岩。反演结果显示,电荷值在 2 至 80 毫秒之间变化。该值分为三个标准,即低(35 毫秒)。低电荷值被解释为没有矿化的区域,因此没有金属矿物。矿化带是从中等电荷率值开始解释的。同时,高电荷值被解释为强矿化带,含有大量金属矿物。矿化带的存在从北面的 2 号轨道延伸至 5 号轨道,而在研究区南面的 1 号轨道,矿化带已经消失或枯竭。
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