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    AngloGold Ashanti’s Normet SmartDrive at Cuiabá: ventilation and shotcrete lessons for engineers

    April 8, 2026|

    Reviewed by Joe Ashwell

    AngloGold Ashanti’s Normet SmartDrive at Cuiabá: ventilation and shotcrete lessons for engineers

    First reported on International Mining – News

    30 Second Briefing

    AngloGold Ashanti has deployed a Normet Utimec LF 600 Transmixer SD battery-electric concrete mixer at its Cuiabá underground gold mine in Brazil, claimed as the first electric concrete mixer operating in the country. The SmartDrive unit will undergo an 18‑month trial, targeting reduced diesel use and lower heat and exhaust loads in confined headings. For geotechnical and shotcrete operations, the trial will test whether battery haul and mixing cycles can maintain required concrete quality and placement rates without compromising ventilation design.

    Technical Brief

    • Electric traction enables precise low-speed control during tramming and discharge in narrow drives.
    • Regenerative braking on declines can recover energy, extending battery range between charging cycles.

    Our Take

    AngloGold Ashanti’s move to battery-electric gear at the Cuiabá gold mine in Brazil sits alongside its portfolio reshaping seen in our coverage, such as divesting Côte d’Ivoire gold projects to Resolute Mining, signalling a push to upgrade remaining core assets rather than simply grow ounces.

    Among gold stories in our database, relatively few combine ‘Product’ and ‘Sustainability’ tags, so deploying Normet’s SmartDrive mixer for an 18‑month test positions Cuiabá as one of the more active underground decarbonisation testbeds in Latin American gold operations.

    With gold equities under pressure in recent months in our coverage, AngloGold Ashanti’s investment in lower‑emission underground equipment at Cuiabá can be read as a cost and ESG hedge, potentially improving its risk profile versus peers still reliant on diesel fleets in similar deep underground settings.

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    Prepared by collating external sources, AI-assisted tools, and Geomechanics.io’s proprietary mining database, then reviewed for technical accuracy & edited by our geotechnical team.

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