Goldinberg has been a trusted name in precious metal extraction for over three decades. Our mining division combines old-world prospecting knowledge with new-generation engineering to deliver projects that are technically sound, economically viable, and environmentally considered.
Operating across open-pit and underground environments, we bring the same rigour to artisan-scale projects as we do to large bulk-mining operations. Every metric — cut-off grade, strip ratio, water usage, tailings integrity — is tracked, reported, and continuously improved.
Our in-house teams cover geology, mine planning, metallurgy, processing plant engineering, and environmental management, reducing interface risk and keeping decision-making close to the orebody.
Multi-disciplinary geologists with experience across greenstone belts, epithermal systems, and sediment-hosted gold deposits globally.
In-house mine planning engineers deliver optimised pit shells, underground designs, and scheduling models aligned to project economics.
From heap-leach pads to carbon-in-pulp circuits, our metallurgists design recovery flowsheets that push gold extraction to its theoretical limits.
We have successfully guided projects through complex permitting environments across multiple jurisdictions, on time and within budget.
Zero-harm is our baseline. Our TRIFR benchmarks consistently outperform industry averages through proactive hazard identification and workforce training.
Our services span the full mining value chain. Whether you require a single-discipline study or end-to-end project delivery, we configure the right team for your asset.
We conduct systematic geological mapping, geochemical sampling, geophysical surveys, and drilling programmes to delineate and characterise gold mineralisation. Resource estimates are prepared to JORC or NI 43-101 standards, providing investor-grade confidence levels.
From scoping through pre-feasibility to definitive feasibility, our studies cover mine design, process selection, infrastructure, capital estimation, operating cost modelling, and risk assessment — delivering the decision-ready documents lenders and boards require.
We design, construct, and operate open-pit mines using optimised blast patterns, load-and-haul fleets, and real-time grade control protocols. Our pit-to-plant integration ensures that ore quality and tonnage targets are met every shift.
Narrow-vein and bulk underground methods — longhole, cut-and-fill, sub-level caving — are selected and managed for maximum recovery with minimal dilution. Our underground teams are trained in mechanised operations and digital monitoring systems for continuous situational awareness.
Our process engineers design and operate gold recovery circuits including crushing, milling, gravity concentration, flotation, cyanide leaching (CIL/CIP), and electrowinning. We optimise reagent consumption, water recycling, and gold dissolution kinetics to push recovery rates above industry norms.
We prepare Environmental and Social Impact Assessments, manage tailings storage facilities in accordance with the Global Industry Standard on Tailings Management (GISTM), and implement biodiversity offset programmes — maintaining our social licence to operate in every community we work with.
Our project delivery model is structured to reduce technical risk, maintain schedule discipline, and maximise value creation at every phase of the mine life cycle.
Geological reconnaissance, sampling, and desktop studies to establish the potential of the target zone.
Systematic drilling, assaying, and geostatistical modelling to build a compliant mineral resource.
Techno-economic studies and environmental applications to secure the project's social and regulatory licence.
Infrastructure, processing plant, and mining fleet commissioning under integrated project management.
Steady-state operations with continuous improvement programmes targeting cost, recovery, and safety.
Goldinberg continuously invests in exploration and operational technologies that sharpen decision-making, improve safety, and lift gold recoveries. From drone-assisted geological mapping to AI-powered ore sorting, we are committed to reducing the cost-per-ounce while setting new benchmarks in responsible operation.
Leapfrog Geo and Micromine platforms enable dynamic orebody models updated continuously from drill data, guiding grade control decisions in near-real time.
UAV photogrammetry and LiDAR scanning deliver centimetre-accurate topographic and volumetric data, replacing traditional survey methods at a fraction of the cost and time.
GPS-enabled dispatch and telematics systems monitor payload, cycle times, and fuel consumption across our open-pit fleets, reducing haulage cost per tonne.
Distributed control systems and advanced process control loops maintain processing plant stability, optimising reagent dosing and recovery kinetics around the clock.
Real-time elemental analysers in the comminution and leach circuits provide instantaneous grade feedback, enabling immediate corrective actions that protect recovery.
Responsible extraction is not a marketing claim at Goldinberg — it is a quantifiable operational standard embedded in every KPI, every permit condition, and every community agreement. We believe the most valuable mine is one that the land, the people, and the planet can sustain long after the last gold pour.
Closed-loop water circuits and on-site recycling facilities reduce fresh water draw by up to 85% versus industry benchmarks. All discharge meets WHO standards.
All tailings facilities are engineered to GISTM level 3 standards with independent annual reviews, real-time piezometric monitoring, and emergency action plans.
Progressive rehabilitation runs concurrent with mining. Native species replanting, topsoil management, and post-closure monitoring are contractual obligations on every project.
Local employment, skills development programmes, and community development funds are established at every operating site, ensuring lasting positive legacy beyond the mine life.
Goldinberg has committed to a 40% reduction in Scope 1 and 2 emissions by 2030 through fleet electrification, renewable energy sourcing, and process efficiency programmes.
From a single technical study to full project delivery — tell us about your asset.