Chao Wang, Zhongxian Wu, Tongbo Wang, Bo Qiao, Hao Huang, Jincheng Ran, Guangxi Ma,  and Dongping Tao, An investigation of mechanisms of nanobubble-enhanced flotation of galena from pyrite, Int. J. Miner. Metall. Mater.,(2024). https://doi.org/10.1007/s12613-024-2984-7
Cite this article as:
Chao Wang, Zhongxian Wu, Tongbo Wang, Bo Qiao, Hao Huang, Jincheng Ran, Guangxi Ma,  and Dongping Tao, An investigation of mechanisms of nanobubble-enhanced flotation of galena from pyrite, Int. J. Miner. Metall. Mater.,(2024). https://doi.org/10.1007/s12613-024-2984-7
Research Article

An investigation of mechanisms of nanobubble-enhanced flotation of galena from pyrite

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  • Received: 26 March 2024Revised: 29 July 2024Accepted: 3 August 2024Available online: 10 August 2024
  • The present study was conducted to investigate the mechanisms through which nanobubbles enhance the flotation separation performance of galena from pyrite by examining the effects of nanobubbles on the surface properties of galena and pyrite and the interactions between mineral particles and air bubbles.  Various analytical techniques, including focused beam reflectance measurement (FBRM), three-phase contact line (TPCL) analysis, zeta potential and contact angle measurements, were employed.  It has been demonstrated that nanobubbles significantly enhanced the flotation recovery of galena and its flotation selectivity from pyrite, as compared to the conventional flotation process.  The preferential formation of nanobubbles on the galena surface, which is more hydrophobic than pyrite surface, further increased the surface hydrophobicity and agglomeration of galena particles.  The introduction of nanobubbles into the flotation system also increased in the maximum TPCL length and detachment length between the galena surface and bubbles, contributing to the enhanced flotation efficiency.

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