Canamera Energy Metals Corp. (CSE: EMET) (OTCQB: EMETF) (FSE: 4LF0) has identified a third rare earth target, named Linda, at its Turvolândia Ionic Clay Rare Earth Project in Brazil, based on assay results from auger hole TUV-AUG-0043. The hole intersected 14 metres of rare earth mineralization from surface to the end of the hole, remaining open at depth, averaging 2,208.6 ppm total rare earth oxides (TREO), including 664.7 ppm magnetic rare earth oxides plus yttrium. These results confirm the Linda target, located between the previously identified Cordis and Marita targets, establishing a three-target exploration corridor across the project.
According to the company, Linda is situated 3.3 kilometres north of Marita and 3.7 kilometres northwest of Cordis. All samples from the hole returned Chemical Index of Alteration values above 70%, averaging approximately 83%, consistent with highly weathered clay profiles associated with ionic adsorption clay-hosted rare earth deposits. Management is now evaluating follow-up drilling programs to test mineralization continuity between the three targets and explore depth potential at Linda.
The identification of a third target significantly expands the exploration potential at Turvolândia, which is part of Canamera’s broader portfolio of rare earth and critical metals projects across the Americas. The company’s asset base includes the Mantle project in British Columbia, the Garrow rare earth elements project in Northern Ontario, the Schryburt Lake rare earth and niobium project in Ontario, the Iron Hills critical and rare earth project in Colorado, USA, and the São Sepé rare earth element projects in Brazil. Canamera targets underexplored regions with strong geological signatures and supportive jurisdictions, applying geochemical, geophysical, and geological datasets to generate and advance first-mover exploration targets.
The full press release is available at https://ibn.fm/nTxPd. For the latest news and updates relating to EMETF, visit the company’s newsroom at https://ibn.fm/EMETF.


