The increasing demandDemand for base metalsMetals, such as nickelNickel and cobaltCobalt, is driven by their roles in electric vehiclesElectric Vehicles (EVs) and renewable energy technologyTechnology markets and requires innovative solutions to reduce project timelines and costs. Modularizing Glencore’s Jameson concentrator technologyTechnology marks a significant advancement in achieving these objectives in metalMetals recovery plants. The Jameson cell’s high-efficiency flotationFlotation process effectively captures fine nickelNickel and cobaltCobalt particles, and the low profile, high intensity grinding environment provided by the IsaMill produces the highest power input per unit volume in minerals processingProcessing applications. By modularizing these technologiesTechnology, compact, prefabricated units can be constructed offsite, significantly reducing on-site setup time and infrastructure needs. These modularModular units simplify installation and decrease labor costs while supporting incremental scalability, allowing capacity adjustments to meet market demandsDemand without major site modifications. EnvironmentalEnvironmental and logistical benefits further strengthen this approach: the compact design reduces the plant’s physical and environmental footprint. Additionally, modularModular units can be relocated to remote sites, improving cash flow and reducing capital costs associated with site-specific infrastructure. This study highlights the economic and operational advantages of modularized Jameson concentrator technologyTechnology, demonstrating how it accelerates plant readiness, reduces capital cost, and supports sustainable, scalable growth in base metal recoveryBase metal recovery.

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Modular Integration of Jameson Concentrator Technology for Enhanced Base Metal Recovery from Various Feed Sources

  • Eleanor Stimpson,
  • Johan Moolman,
  • Jess Van Sliedregt,
  • Chris Anderson

摘要

The increasing demandDemand for base metalsMetals, such as nickelNickel and cobaltCobalt, is driven by their roles in electric vehiclesElectric Vehicles (EVs) and renewable energy technologyTechnology markets and requires innovative solutions to reduce project timelines and costs. Modularizing Glencore’s Jameson concentrator technologyTechnology marks a significant advancement in achieving these objectives in metalMetals recovery plants. The Jameson cell’s high-efficiency flotationFlotation process effectively captures fine nickelNickel and cobaltCobalt particles, and the low profile, high intensity grinding environment provided by the IsaMill produces the highest power input per unit volume in minerals processingProcessing applications. By modularizing these technologiesTechnology, compact, prefabricated units can be constructed offsite, significantly reducing on-site setup time and infrastructure needs. These modularModular units simplify installation and decrease labor costs while supporting incremental scalability, allowing capacity adjustments to meet market demandsDemand without major site modifications. EnvironmentalEnvironmental and logistical benefits further strengthen this approach: the compact design reduces the plant’s physical and environmental footprint. Additionally, modularModular units can be relocated to remote sites, improving cash flow and reducing capital costs associated with site-specific infrastructure. This study highlights the economic and operational advantages of modularized Jameson concentrator technologyTechnology, demonstrating how it accelerates plant readiness, reduces capital cost, and supports sustainable, scalable growth in base metal recoveryBase metal recovery.