Application of 2-D electrical resistivity imaging, and induced polarization methods for delineating gold mineralization at Felda Chiku 3, Kelantan, Malaysia

Hussein Ahmed Hasan Zaid, and Mohd Hariri Arifin, and Kayode, John Stephen and Mohd Basril Iswadi Basori, and Mohd Rozi Umor, and Suraya Hilmi Hazim, Application of 2-D electrical resistivity imaging, and induced polarization methods for delineating gold mineralization at Felda Chiku 3, Kelantan, Malaysia. Sains Malaysiana, 52 (1). pp. 305-320. ISSN 0126-6039

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Abstract

A geophysical survey has been carried out to assess the distribution of gold minerals at the Felda Chiku 3, Gua Musang district, Kelantan, Peninsular Malaysia. A 2-D geo-electrical resistivity imaging (ERI), combined with Induced Polarization (IP) method, and Oasis Montaj modelling were applied to delineate the potential conductive zones associated with sulphide mineralization. Most Peninsular Malaysia’s gold deposits occur in hydrothermal sulphides as discrete ore formations within the host rocks. A good correlation between the ERI and the IP profiles was observed during the interpretation of the model that successfully identifying the low resistive, and high chargeable sulphide zones, which correspond to the gold mineralization zones. The correlations could be linked to the conductive features at depth ranging from about 25 m - 135 m, trending along N-S directions. The study suggests further geo-electrical investigation to be carried out towards the south-western part of the area as more potential mineralized zones with N-S trends could be found in this region. Further studies would be able to give the extent of the gold deposits in Kelantan and by extension, allow for better informed mineral exploration and drilling operations to mine the gold in the region.

Item Type:Article
Keywords:Gold mineralization; IP chargeability method; Kelantan; Peninsular Malaysia; 2-D resistivity technique
Journal:Sains Malaysiana
ID Code:21555
Deposited By: Siti Zarenah Jasin
Deposited On:09 May 2023 07:11
Last Modified:09 May 2023 07:11

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