FloatForce®+ Mixing Mechanism Trial at Kennecott Copperton Concentrator - SME Annual Meeting 2025

Society for Mining, Metallurgy & Exploration
Joshua Cole Joshua Dettamanti Rabia Abbasi Joshua Sovechles Christian Cardoso Guillermo Bermudez Martta Hirsi
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
6
File Size:
1273 KB
Publication Date:
Feb 1, 2025

Abstract

The implementation of technological advancements in flotation is key to optimize performance in mining operations. Consequently, flotation cell’s performance is highly dependent on the effectiveness of the mixing mechanism. A more efficient flotation mixing mechanism is likely to improve metallurgical performance and optimize energy consumption, which is the motivation for Metso’s journey to develop the latest iteration of FloatForce®. Looking to test the new design at plant scale, Metso approached the Kennecott Copperton concentrator, which is continuously looking for different venues to improve metallurgical performance. In this context, a test campaign was conducted to implement this new flotation mixing mechanism in their rougher circuit during 2024. The industrial trial consisted of several sampling campaigns assessing different operational parameters for comparison purposes around a 300m3 flotation cell. The effect of the new flotation mixing mechanism on the cell’s power draw was also studied. The results of this trial at Kennecott are presented in this paper. Overall new flotation mixing mechanism, FloatForce+ was seen to perform as well as the original FloatForce.
Citation

APA: Joshua Cole Joshua Dettamanti Rabia Abbasi Joshua Sovechles Christian Cardoso Guillermo Bermudez Martta Hirsi  (2025)  FloatForce®+ Mixing Mechanism Trial at Kennecott Copperton Concentrator - SME Annual Meeting 2025

MLA: Joshua Cole Joshua Dettamanti Rabia Abbasi Joshua Sovechles Christian Cardoso Guillermo Bermudez Martta Hirsi FloatForce®+ Mixing Mechanism Trial at Kennecott Copperton Concentrator - SME Annual Meeting 2025. Society for Mining, Metallurgy & Exploration, 2025.

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