2021
DOI: 10.3389/fchem.2021.700347
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Surface Mechanism of Fe3+ Ions on the Improvement of Fine Monazite Flotation With Octyl Hydroxamate as the Collector

Abstract: Froth flotation of fine minerals has always been an important research direction in terms of theory and practice. In this paper, the effect and mechanism of Fe3+ on improving surface hydrophobicity and flotation of fine monazite using sodium octyl hydroxamate (SOH) as a collector were investigated through a series of laboratory tests and detection measurements including microflotation, fluorescence spectrum, zeta potential, and X-ray photoelectron spectroscopy (XPS). Flotation tests have shown that fine monazi… Show more

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Cited by 4 publications
(1 citation statement)
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“…Other coexisting cations like La 3+ , Pb 2+ , Al 3+ , and Fe 3+ may improve the flotation efficiency of REMs, as noted by many researchers [43,71,78,85,104,[126][127][128][129]. These cations are artificially added into the flotation pulp to make the surface of REMs more positively charged (e.g., PbOH + adsorption) and improve collector adsorption.…”
Section: Roles Of Dissolved Ions In Rare Earth Mineral Flotationmentioning
confidence: 99%
“…Other coexisting cations like La 3+ , Pb 2+ , Al 3+ , and Fe 3+ may improve the flotation efficiency of REMs, as noted by many researchers [43,71,78,85,104,[126][127][128][129]. These cations are artificially added into the flotation pulp to make the surface of REMs more positively charged (e.g., PbOH + adsorption) and improve collector adsorption.…”
Section: Roles Of Dissolved Ions In Rare Earth Mineral Flotationmentioning
confidence: 99%