Exploration & Target Generation

Exploration and target generation is where most day-one AI adoption happens in mining, because the data - drill core, geochemistry, geophysics surveys - already exists in the volumes machine learning needs. This is the instrument layer: automated mineralogy platforms like TIMA, MLA and QEMSCAN, hyperspectral core scanners for clay and alteration mapping, portable XRF and LIBS analyzers, and airborne gravity and magnetics surveys.

On top of that instrument layer sits a growing set of prediction models: rock strength from point-load testing, comminution parameters, and the density and geochemical proxies that feed a resource model long before mining starts. If you’re deciding where to start applying AI to an exploration program, this is usually the highest-leverage place to look first, both because the data already exists and because the vendors serving this space (Corescan, TESCAN, Zeiss, CSIRO) have already done the hard work of making their AI classifiers production-grade rather than research prototypes.

Handheld XRF

Key Takeaways Field-portable XRF is mature hardware — Evident (formerly Olympus) Vanta Max and Bruker TITAN are the two names you’ll see everywhere. The AI angle is onboard chemometric calibration and signal processing (e.g. Evident’s Axon technology), not a separate AI product you buy. …

Hyperspectral (Point or Scan)

Key Takeaways Two flavors exist: handheld point spectrometers (fast, spot checks) and full-core imaging scanners (slow, exhaustive, image-based). The core technology (VIS-NIR-SWIR reflectance spectroscopy) is mature and commercial; the “AI” part is mostly in the automated …

Hyperspectral imaging / Spectroscopy Device

Key Takeaways Portable VIS-SWIR spectrometers like the ASD TerraSpec Halo (Malvern Panalytical) identify minerals in the field or on core in seconds via spectral-library matching. Note: as of this writing, the TerraSpec Halo itself is listed as no longer …

Informed Logging

Key Takeaways “Informed” logging means the geologist (or AI system) logs new core with the benefit of prior geological/geophysical model context, not in isolation. Datarock Core and Seequent Central’s logging module both support this by surfacing existing model context alongside …

LIBS

Key Takeaways LIBS (Laser-Induced Breakdown Spectroscopy) detects light elements — lithium, boron, carbon, sodium, fluorine — that handheld XRF simply can’t see. The SciAps Z-300/Z-903 is the standard handheld unit, covering the full periodic table from hydrogen to uranium. No X-rays means no …

Permitting

Key Takeaways Environmental and social permitting is one of the slowest, most document-heavy parts of standing up a copper project — and it’s only now starting to see AI tooling. The clearest fit is AI-assisted ESG/compliance reporting platforms (e.g. Ecodrisil ESG Xpress), which automate data …

Petrography

Key Takeaways Petrographic thin-section analysis (identifying minerals and textures under a microscope) is still overwhelmingly analyst-driven — there’s no single dominant commercial AI product yet. Published CNN research is real and promising: concatenated convolutional neural network …