USA – Zinc & Lead, Red Dog

Red Dog — Alaska, USA | VEXRAD Insights & Evidence
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Red Dog — Alaska, USA

Testing whether sulphide-targeting criteria developed on Australian drill control transfer to a world-class Zn–Pb district in Alaska.

Evidence tier — ValidatedRed Dog district · AlaskaZn–Pb sulphidesCross-site transfer test
5Red Dog scans included in the study
650–700 mPyrite-rich zone identified at AN944
9–16 MHzFrequency processing compared with drill grade
The test

Can a sulphide signature transfer between sites?

The Red Dog work formed part of a wider test: develop sulphide-selection criteria using Australian drill-controlled scans, then apply those criteria to independent geology in Alaska.

At scan AN810, the 9–16 MHz frequency response showed a dip at approximately the same depth as the drill-recorded sulphide occurrence. At AN944, a multi-evidential interpretation using energy and frequency criteria identified the pyrite-rich Ikalukrok Fe-sulphide zone at approximately 650–700 m.

The value of this case is not a claim of grade prediction. It is the evidence that an ADR response developed across one set of sulphide-bearing rocks could be tested against a separate Zn–Pb system and compared directly with drill information.

Red Dog — Alaska, USA ADR case-study results
Red Dog source results: ADR response, drill lithology and Pb/Zn grade plotted on a common depth axis.
What the evidence shows

Multiple measurements. One geological question.

01

Cross-site criteria

Selection criteria developed from Australian sulphide scans were carried into the Red Dog analysis rather than being invented independently for each Red Dog hole.

02

AN810 drill comparison

The 9–16 MHz frequency results show a response at approximately the same depth as the sulphide occurrence in the drill data.

03

AN944 pyrite zone

The combined evidence interpretation aligns with the mapped and drilled Ikalukrok pyrite-rich interval at roughly 650–700 m.

VALIDATED AGAINST DRILL DATA

At Red Dog, the ADR interpretation aligned with independently known sulphide intervals.

The strongest website-ready result is AN944: after applying the multi-evidential correlation and comparing it with assay and drill interpretation, the study reports that the correlation identified the pyrite zone. AN810 provides a second line of evidence, with frequency behaviour at approximately the depth of the sulphide occurrence.

What this does — and doesn’t — claim

ADR is presented here as a sulphide-targeting and subsurface-characterisation method. These results do not demonstrate direct prediction of Zn or Pb grade, tonnage, resource size or economic value. Depth and interpretation uncertainty remain part of the result.

See before you drill.

Could ADR add another evidence layer before your next drill decision?

Start with the project, the existing geology and the decision you need to make. VEXRAD will tell you where ADR may add value — and where it may not.

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Source: VEXRAD-owned 2024 sulphide exploration study, Red Dog analysis pp. 21–25.

ADR technology, study data and copyright are owned and carried forward by VEXRAD Ltd. Findings are presented under VEXRAD’s evidence framework.
HAVE A TARGET OF YOUR OWN?

What could ADR show at your target?

Every geological setting is different. This case study demonstrates evidence from a particular project; it does not guarantee the same result elsewhere.

If you have a target, existing geoscience or a proposed drill location, start with a free VEXRAD Project Fit Check. We will review whether ADR appears technically relevant before recommending further work.

No commitment to a field programme is required to submit a Project Fit Check.