![]() ![]() Best results included 838 ppb Au (0.84 g/t Au), 520 ppb Au and 463 ppb Au. Follow-up semi-regional soil sampling (400m by 200m spacing) over six initial grids confirmed anomalous gold in all five licences and has delineated multiple 2-3km long gold-in-soil anomalies across the Ndom, Pokor and Niambaram licences, as well as a broad anomalous zone within the Mbe licence, where en-enchelon, structurally-controlled trends are now confirmed to occupy a c.12.5km long by 3km wide corridor. Best results of 291 ppb Au and 95 ppb Au were returned from the Ndom and Tenekou licences respectively and a total of 18 areas graded >30 ppb Au. The results identified multiple areas of elevated gold in distinct drainage basins, associated with the northeast-trending TBSZ corridor and related structures. In Q3 2021, the Company completed regional mapping and stream sediment sampling over the Eastern CLP. Following the identification of anomalous lithium-in-soil values (up to 84 ppm) within multi-element data from the Ndom licence, a ninth licence, Gamboukou, was applied for immediately to the south of Ndom. Remote sensing work on the CLP has interpreted that the TBSZ passes through at least six licences all of the Oriole licences in the east of the package and at least one of the BEIG3 licences (Sanga) in the west, with the potential for it to be hidden by the Cenozoic cover rocks in the Mana and Dogon. The TBSZ and its associated shears, thrusts and faults are (according to academic literature) thought to be one of the significant structural controls for gold and other mineralisation in the region. This assessment was made on the basis of host-rock geology, structural location – targeting the regional Tcholliré-Banyo shear zone (TBSZ) which is a major splay off the larger scale Central African Shear Zone. The eight Eastern CLP and Western CLP licences, all of which were granted in February 2021, were applied for following an in-house, country-wide prospectivity analysis that deemed the district as having significant potential to host orogenic-type gold mineralisation. ![]()
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