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    Metso flotation and dewatering for Reko Diq: flowsheet notes for process engineers

    December 22, 2025|

    Reviewed by Tom Sullivan

    First reported on International Mining – News

    30 Second Briefing

    Metso has secured approximately €70 million in remaining major contracts under its August 2024 frame agreement to supply Metso Plus beneficiation and dewatering equipment to Barrick Mining’s 50%-owned Reko Diq copper-gold project in Pakistan. The package covers advanced flotation and dewatering systems sized for large-scale porphyry copper-gold throughput, aimed at improving concentrate recovery and water management in an arid environment. For process engineers and project teams, the deal confirms Metso’s technology as the baseline flowsheet for Reko Diq’s concentrator and tailings dewatering design.

    Technical Brief

    • Frame agreement with Reko Diq Mining Company was originally announced in August 2024.
    • Barrick holds a 50% interest in Reko Diq Mining Company, defining joint decision-making on process kit.
    • Contract scope is limited to beneficiation and dewatering; no EPC or civils responsibility is implied.
    • For other large porphyry projects, similar frame agreements can de-risk vendor interface and standardise flowsheet design.

    Our Take

    Reko Diq is one of the few Pakistan-based assets in our 419 Mining stories, so Metso’s equipment foothold here gives it early exposure to what is likely to be the country’s flagship copper-gold operation.

    With Barrick Mining holding 50% of Reko Diq Mining Company, the choice of Metso for flotation and dewatering kit positions Metso well for follow-on brownfield or expansion phases that Barrick typically pursues at large copper-gold systems.

    Copper and gold feature in 202 keyword-matched pieces in our database, and most large-scale projects in that set are in the Americas or Africa, underscoring how unusual it is to see Tier-1 style concentrator equipment contracts in Pakistan at this stage of the country’s mining sector development.

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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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