Perpetual Resources Reviews 7m at 1.95% Tungsten in Nevada Historical Data
Key Takeaways
- 22 of 42 reviewed historical holes (52%) returned intervals at or above the 0.2% WO₃ threshold, with standout intercepts including 7.01m at 1.95% WO₃ and 3.81m at 2.01% WO₃ from the 1968 Union Carbide drilling campaigns.
- The reviewed tranche represents only approximately 10% of the known drilling archive, which contains more than 400 historical sample points — meaning the bulk of the data set is yet to be digitised and assessed.
- Historical production grades at Nevada Scheelite averaged 1.1% WO₃ between 1937 and 1957, well above the global deposit norm of 0.2%–0.5% WO₃, providing a meaningful benchmark for the intercepts now being recovered from the archive.
- Perpetual plans to integrate validated data into a 3D geological model within four weeks, with three priority drill targets identified including an untested deep contact dip reversal below the 500 Level.
- All results are unverified historical exploration data transcribed from Union Carbide archives — they do not establish a Mineral Resource, and true widths remain unknown pending modern field validation and core re-assay.
Perpetual uncovers multiple high-grade tungsten intercepts at Nevada Scheelite
Perpetual Resources (ASX: PEC) has reviewed the first tranche of historical drilling data from its Nevada Scheelite Tungsten Project in Mineral County, Nevada, USA. 22 of 42 reviewed holes (52%) returned reported historical intervals at or above the 0.2% WO₃ threshold — a meaningful proportion that suggests systematic grade distribution across the drilled zones.
Nevada Scheelite is a past-producing tungsten mine with historical average production grades of approximately 1.1% WO₃ between 1937 and 1957. Perpetual is advancing its option to acquire the patented claim blocks encompassing the historical mine. These are unverified historical Exploration Results, do NOT establish a Mineral Resource, and geological continuity is not asserted. This is a review of past-operator (Union Carbide) archives, not a new discovery.
When big ASX news breaks, our subscribers know first
The standout historical intercepts
The highest-grade digitised intervals from the 1968 campaigns are presented below. This tranche represents only approximately 10% of the known drilling archive (400+ sample points). Results are transcribed from typed archival compilations, lacking QA/QC, and true widths are unknown.
| Hole ID | Interval (m) | Grade (% WO₃) | Downhole From–To (m) | Source |
|---|---|---|---|---|
| 5-DH-02 | 7.01 | 1.95 | 5.55–12.56 | 0005817_UCC.pdf |
| 4-DH-11 | 7.59 | 1.50 | 28.35–35.94 | 0005817_UCC.pdf |
| 5-DH-09 | 8.60 | 1.10 | 14.87–23.47 | 0005817_UCC.pdf |
| 5-DH-07 | 5.49 | 1.54 | 8.84–14.33 | 0005817_UCC.pdf |
| 5-DH-03 | 3.81 | 2.01 | 21.79–25.60 | 0005817_UCC.pdf |
| 5-DH-06 | 0.61 | 3.10 | 57.82–58.43 | 0005817_UCC.pdf |
Note: Intervals are downhole lengths; true widths unknown.
These results are broadly consistent with the previously reported historical result of 8.2m at 2.40% WO₃ from Hole G-17 (ASX announcement 17 June 2026).
What tungsten is and why these grades matter
Tungsten (chemical symbol W, reported as WO₃ — tungsten trioxide) is a critical mineral prized for its extreme hardness and the highest melting point of all metals. It is essential in cutting tools, drill bits, and aerospace components, and plays a growing role in new-energy supply chains (electric vehicle motors, wind turbines) and defence applications (kinetic penetrators, armour-piercing ammunition).
Nevada Scheelite hosts tactite (skarn) mineralisation — tungsten-bearing zones formed along the contact between a granodiorite intrusion and Triassic-Jurassic limestone. When hot, mineral-rich fluids from the granodiorite interacted with the limestone, they deposited scheelite (calcium tungstate) in narrow, high-grade zones at the contact.
Why ~1% WO₃ grades are high-grade: Global tungsten deposits typically range from 0.2% to 0.5% WO₃. Grades above 1% WO₃ are considered high-grade and historically supported economic mining at Nevada Scheelite. The 1.1% WO₃ historical production average sits well above global norms.
What this means for you: Nevada Scheelite sits in a tier-one mining jurisdiction (Nevada), holds exposure to a critical mineral with strategic demand drivers, and has returned multiple high-grade historical intercepts. That combination matters if the historical data can be validated and extended. Results remain unverified, but the grade profile and jurisdictional setting differentiate this project from early-stage greenfield exploration.
Strategic significance of tungsten exposure:
- Hardness: Tungsten carbide is the material of choice for cutting tools, mining drill bits, and industrial machining.
- Defence demand: Tungsten is irreplaceable in kinetic energy penetrators and armour-piercing munitions.
- Critical-minerals classification: Listed as a critical mineral by the US, EU, and Australia due to supply concentration and strategic importance.
- New-energy supply chains: Essential in high-efficiency electric motors, wind turbine gearboxes, and heavy-duty applications where alternatives cannot match performance.
Data validation and how the archive stacks up
Perpetual used two data-capture methods: drill log conversion (transcription of tabulated historical drill-log summary tables) and section-plan interpretation (preliminary transcription from historical drawings). Section-plan-derived values are less certain and have not been reported as quantitative results unless independently reconciled to a tabulated primary record.
Collar and downhole survey data have been confirmed for 29 of 42 holes (69%), and mineralised intervals have been reconciled for 22 holes. 13 holes have been excluded pending collar/survey confirmation. Four twin holes (U-DH-01, U-DH-02, U-DH-03, U-DH-04) have collar/survey data inferred from confirmed twin associations (5-DH-01, 5-DH-02, 5-DH-03, 5-DH-04).
Competent Person Mr Jonathan King reviewed original Union Carbide Corporation reports (0005817UCC.pdf, 0006182UCC.pdf). The Competent Person’s review confirms the digitised data “fairly represents the historical source records; it does not constitute independent verification.” That distinction is critical. The data has been cross-checked for internal consistency, but it has not been independently verified through modern drilling, re-assay, or field validation.
Historical core remains in on-site storage and at Fallon, Nevada facilities. Perpetual plans to audit surviving core and conduct modern re-assay for QA/QC verification.
Tranche status snapshot:
- 42 holes reviewed (~10% of archive)
- 29 holes with confirmed collar/survey (69%)
- 22 mineralised holes ≥0.2% WO₃
- 13 holes excluded pending validation
Building the 3D model and priority drill targets
Historical cross-sections, level plans, and mine records will feed an integrated 3D geological model of the granodiorite-limestone contact. That model will prioritise modern validation and step-out drilling.
Target concepts identified:
- North-contact intrusive “overhang” geometries: Historical mine plans show higher-grade ore shoots were preferentially localised around north-contact intrusive overhangs, where structural traps focused hydrothermal fluid flow and scheelite deposition.
- Deep contact dip reversal below the 500 Level: This zone remains untested by modern drilling and represents a priority extension target.
- Northeast embayment along the Turtle/Tungsten claim boundary: Minimal historical exploration coverage, offering potential for discovery of parallel mineralised zones.
Julian Babarczy, Executive Chairman
“Nevada Scheelite is a past-producing tungsten mine with a historical production grade of around 1.1% WO₃, and this first tranche of analysis of historical drilling adds multiple encouraging high-grade data points across the known skarn system. The broader archive contains more than 400 historical sample points, providing a substantial body of additional technical information for review. While these historical results require modern validation, they provide a strong foundation for our 3D geological model and future drilling to test the potential for mineralisation to continue along the skarn contact and at depth.”
The next major ASX story will hit our subscribers first
What comes next for Perpetual
The Company expects to complete the following work in the near term:
- Complete digitisation and validation of remaining historical database — expected in coming weeks
- Recover collar coordinates and downhole survey data via modern surveys
- Physical audit of surviving historical core for re-assay and QA/QC
- Integrate validated data into a 3D geological model — expected within four weeks
- Use the model to prioritise and design a validation and resource-definition drilling programme
Further updates are expected as more of the archive is validated. These steps are designed to convert historical data into a verified foundation for modern resource estimation, but they do not imply resource confirmation or economic viability at this stage.
Want the Next Critical Minerals Discovery in Your Inbox?
Join 30,000+ investors receiving FREE breaking ASX news and in-depth analysis within minutes of release. Discovery Alert delivers real-time alerts on critical minerals, tungsten, and strategic metals the moment market-moving announcements drop. Click the “Free Alerts” button to stay ahead on ASX mining news.
