Aldoro Resources Delivers 804.5Mt Kameelburg Rare Earth Mineral Resource Update
Aldoro Resources (ASX: ARN) has delivered a landmark result from its Kameelburg Rare Earth and Strontium Project in Namibia, reporting up to ~72% Total Rare Earth Element (TREE) extraction and an exceptional greater than 99% strontium recovery from maiden hydrometallurgical testwork. Conducted by ALS Metallurgy Services in Perth, the Aldoro Resources Kameelburg rare earth direct leach results in Namibia represent the first systematic acid leach evaluation of Kameelburg mineralisation — and the findings carry significant implications for how this project is positioned relative to the global rare earth development landscape.
What makes these results genuinely distinctive is not just the recovery numbers themselves, but how they were achieved. The Kameelburg ore composite was leached directly using conventional atmospheric hydrochloric acid — without any prior flotation, magnetic separation, or thermal pre-treatment. In a sector where most major projects require multiple beneficiation stages before hydrometallurgical processing can even begin, this is an unusual and potentially valuable characteristic.
"These maiden metallurgical results represent a major de-risking milestone for Kameelburg and further reinforce the project's emergence as one of the world's most significant undeveloped rare earth and strontium systems."
— Quinn Li, Chairperson, Aldoro Resources
Key headline metrics at a glance:
The testwork was conducted on a composite sample designated "Kameelburg Comp A," drawn from 30 diamond drill core samples sourced from drill hole DD004D. The total sample mass was 91.27 kg, with individual core samples ranging from approximately 2.0 to 3.75 kg.
Sample preparation steps:
Five acid leach and re-leach tests were conducted under varying conditions at ambient temperature, 20% w/w solids, and 60–120-minute residence times. An indicative magnetic separation evaluation was also completed.
The elemental head analysis confirmed a high-grade sample consistent with the project's ancylite-carbonatite mineralisation:
| Element | Assay |
|---|---|
| Total Rare Earth Elements (TREE) | 1.28% |
| Strontium (Sr) | 2.67% |
| Cerium (Ce) | 0.61% |
| Lanthanum (La) | 0.40% |
| Neodymium (Nd) | 0.17% |
| Praseodymium (Pr) | 0.05% |
| Calcium (Ca) | 12.70% |
| Iron (Fe) | 14.90% |
| Magnesium (Mg) | 5.17% |
| Manganese (Mn) | 3.15% |
| Barium (Ba) | 1.12% |
| Phosphorus (P) | 0.68% |
| Test | HCl (% w/w) | Sr Extraction | TREE Extraction |
|---|---|---|---|
| HY21410 (Primary leach) | 15% | 99.6% | 69.2% |
| HY21417 (Primary leach, post mag-sep) | 15% | 99.4% | 68.5% |
| HY21353 (Primary leach) | 10% | 99.0% | 22.3% |
| HY21411 (Cumulative incl. re-leach) | 10% (re-leach) | 99.7% | 69.9% |
| HY21419 (Cumulative incl. re-leach) | 10% (re-leach) | 99.6% | 71.8% |
The notably lower TREE extraction of 22.3% in test HY21353 (10% HCl, primary only) was attributed to acid starvation, confirmed by a final pH of approximately 3.9. The subsequent re-leach stage in HY21411 and HY21419 recovered substantially more TREE, validating that available acid quantity — not mineral amenability — was the limiting factor.
Furthermore, strontium and calcium reported very strong extraction across all test configurations, with calcium recovery exceeding 94% in all primary leach tests and surpassing 99% cumulatively.
For investors less familiar with rare earth processing, one concept stands out as central to understanding the significance of the Aldoro Resources Kameelburg rare earth direct leach results in Namibia: direct acid leachability.
Most rare earth minerals — including the monazite, bastnäsite, and xenotime that dominate many major global projects — are chemically stable and resistant to dissolution. Extracting the rare earth elements from these minerals typically requires two distinct and costly processing stages:
Beneficiation: A physical upgrading step (flotation, magnetic separation, or gravity concentration) that separates the REE-bearing mineral from surrounding waste rock (gangue) to produce a higher-grade mineral concentrate. This requires dedicated plant infrastructure, reagents, and energy.
Hydrometallurgical cracking: A chemically aggressive step — such as a sulphuric acid bake at high temperatures, a sulphation roast, or a caustic conversion — that breaks down the refractory mineral structure to make rare earth elements accessible to leaching. This is typically the most energy-intensive and reagent-intensive step in a rare earth processing flowsheet.
Ancylite — the rare earth-bearing mineral at Kameelburg — is a hydrous strontium-cerium-lanthanum carbonate that is reported as readily soluble in acids. The maiden testwork has now demonstrated that this mineral can be leached directly using atmospheric hydrochloric acid at ambient temperature, from run-of-mine style mineralisation, without requiring either of the two stages above.
If validated through further testwork and engineering studies, direct leachability has the potential to reduce both capital costs (no beneficiation plant required) and operating costs (no high-temperature cracking circuit) of a Kameelburg processing facility. It also has the potential to simplify the overall process flowsheet and shorten development timelines relative to comparable projects — though these are early-stage indications requiring further validation.
Glossary of relevant terms:
The table below illustrates how Kameelburg's processing approach differs from most Australian-listed rare earth development peers:
| Project | ASX Code | Host Mineral | Beneficiation Required | Hydromet Cracking Step |
|---|---|---|---|---|
| Mt Weld | LYC | Monazite | Flotation | Sulphuric acid bake + leach |
| Mountain Pass | NYSE: MP | Bastnäsite | Flotation | Acid leach + solvent extraction |
| Ngualla | PEK | Weathered bastnäsite | Two-stage flotation + regrinding | Calcination + selective leaching |
| Nolans | ARU | Apatite / monazite | Flotation | Acid leach, SX, separation |
| Yangibana | HAS | Monazite | Flotation | Cracking + leach |
| Browns Range | NTU | Xenotime | WHGMS + flotation | Sulphation bake + water leach |
| Dubbo | ASM | Polymetallic trachyte | None (whole-of-ore) | H₂SO₄ roast + water leach |
| Kameelburg | ARN | Ancylite (REE-Sr carbonate) | Not required — direct leach demonstrated | Atmospheric HCl leach — no thermal cracking required |
On TREE recovery, the ~72% cumulative extraction achieved compares materially favourably with the 42.7% recovery rate reported for the Ngualla rare earth project in Tanzania. Critically, Kameelburg's result was achieved from unbeneficiated whole-rock ore under non-optimised, ambient-temperature conditions.
Note: Comparisons are presented for general context only. Material differences in mineralogy, ore grade, tonnage, project maturity, jurisdiction, and commercial position exist between Kameelburg and each comparable project referenced.
One dimension that the Aldoro Resources Kameelburg rare earth direct leach results in Namibia make significantly more tangible is the strontium opportunity. The >99% strontium extraction achieved consistently across all five tests, combined with a 2.67% Sr head grade, demonstrates that strontium is highly amenable to the same leach circuit being developed for rare earths.
Aldoro has previously announced that Kameelburg hosts what the company describes as the world's largest reported strontium resource. The maiden metallurgical programme now confirms that strontium can be extracted from the ore with exceptional efficiency, laying the groundwork for a dedicated strontium product stream as a co-product alongside rare earth outputs.
Why strontium matters:
The announcement also highlights Kameelburg's magnet rare earth exposure, with neodymium (Nd) and praseodymium (Pr) — collectively referred to as NdPr — as components of the REE basket. NdPr is a primary input for rare earth permanent magnets used in electric vehicles, wind turbines, and defence applications.
Aldoro has outlined a clearly structured next-phase metallurgical programme targeting improved TREE recovery and reduced processing input costs. The programme is designed to build toward a process flowsheet suitable for scoping-level economic studies.
The Aldoro Resources Kameelburg rare earth direct leach results in Namibia have moved the project through a pivotal early-stage de-risking step. Before this announcement, the project had established a significant resource base and compelling geology. The maiden metallurgical testwork now adds a third pillar: confirmation that the ore can be processed using a well-understood, commercially established technology.
The investment case rests on several reinforcing factors:
Key Takeaway:
Aldoro Resources has demonstrated that Kameelburg ore can be leached directly with conventional atmospheric hydrochloric acid — achieving up to ~72% TREE recovery and >99% strontium extraction without prior beneficiation. These maiden results, achieved under non-optimised conditions, establish a strong processing baseline for a project that combines world-scale strontium, meaningful rare earth grades, and a potentially simplified processing route. With a structured optimisation programme now underway, the next 12 months of metallurgical development could be transformative for the Kameelburg investment case.
All technical information in this article is sourced from Aldoro Resources' ASX announcement dated 5 June 2026, based on metallurgical testwork conducted by ALS Metallurgy Services (Report No. A27570-B). All project comparisons are for general context only; material differences in mineralogy, grade, tonnage, project maturity, and commercial position exist between Kameelburg and referenced peer projects. Results presented are from initial laboratory-scale testwork; further testwork and engineering studies are required before definitive process economics can be established.
Discovery Alert's proprietary Discovery IQ model scans ASX announcements in real time, instantly alerting subscribers to significant mineral discoveries — from rare earth breakthroughs to multi-commodity opportunities like Kameelburg — turning complex data into actionable investment insights. Explore historic discoveries and their exceptional returns on Discovery Alert's dedicated discoveries page, or begin your 14-day free trial today to position yourself ahead of the broader market.