The primary objective of this exploration is to investigate potential sulfate-bearing zones for metal deposits in the State of Para, Brazil, with the aim of locating these metal deposits.
Using geophysical methods in gold ore exploration (particularly for alluvial or quartzite deposits), the conductive differences of metals within limestone rock-soil layers—specifically excitation polarization (IP) and resistivity—enable the identification of potential locations for metal deposits based on these resistivity variations.
GD-10 Supreme 2D+/3D+ 24-channel high-density electrical exploration instrument, utilizing a configuration of 24 channels with non-polarized electrodes in areas containing metal deposits.
24-pole non-polarizing electrodes for use in areas containing metal deposits
Gold embedded in quartz stone
The GD-10 high-density electrical prospecting instrument features advanced data acquisition and storage capabilities, enabling it to generate 2D and 3D images highlighting gold deposits within mineralized targets.
The comparison between the physical properties of load-bearing capacity and the resistivity of the surrounding environment facilitates the delineation of the deposit environment, thereby aiding in the identification of gold ore accumulation zones and enabling the use of drilling to pinpoint approximate areas containing metallic deposits within these zones.
The comparison between the physical properties of load-bearing capacity and the resistivity of the surrounding environment facilitates the delineation of the deposition zone, thereby enabling the identification of potential metal-rich areas within gold ore deposits through drilling operations.
On-site layout and wiring scheme
Results Show