Integration of Direct Flotation Reactor (DFR) Technology: From Pilot to Full-scale Operations at Barrick's Jabal Sayid Copper Concentrator

- Organization:
- Canadian Institute of Mining, Metallurgy and Petroleum
- Pages:
- 7
- File Size:
- 853 KB
- Publication Date:
- May 4, 2025
Abstract
The adoption of innovative technologies in mineral processing often raises concerns about complexity and integration. However, Woodgrove’s Direct Flotation Reactor (DFR) technology at Barrick’s Jabal Sayid copper concentrator provides a different perspective. This paper outlines the smooth integration of DFR technology from piloting to full-scale commissioning, showcasing how easily the cells were brought online.
Installed in a cleaner scalper role, DFR cells at Jabal Sayid upgrade re-ground rougher concentrate to final concentrate in one stage. Despite processing challenging ore, the DFR cells delivered concentrate grades that consistently exceeded expectations. The commissioning process was straightforward with minimal hurdles, highlighting the technology's user-friendly nature.
This paper advocates for a shift in perceptions about new technologies in mineral processing. The success of DFR technology at Jabal Sayid demonstrates that “different” doesn’t mean “difficult.” By focusing on ease of commissioning and operational integration, innovative solutions can enhance processes, improving efficiency and productivity in the mining industry.
Citation
APA:
(2025) Integration of Direct Flotation Reactor (DFR) Technology: From Pilot to Full-scale Operations at Barrick's Jabal Sayid Copper ConcentratorMLA: Integration of Direct Flotation Reactor (DFR) Technology: From Pilot to Full-scale Operations at Barrick's Jabal Sayid Copper Concentrator. Canadian Institute of Mining, Metallurgy and Petroleum, 2025.