期刊
MINERALS
卷 13, 期 5, 页码 -出版社
MDPI
DOI: 10.3390/min13050702
关键词
synthesis; flotation; quartz; apatite; cationic collector
A novel hydroxyl-containing quaternary ammonium surfactant was synthesized and applied as a collector for the reverse cationic flotation separation of apatite from quartz. The adsorption mechanisms between the surfactant and the two mineral surfaces were investigated, and the results showed excellent flotation performance.
In this paper, a novel hydroxyl-containing quaternary ammonium surfactant N-(2-Hydroxyethyl)-N, N-dimethyl-3-[(1-oxododecyl)amino]-1-propanaminium (LPDC) was synthesized and introduced as a collector for the reverse cationic flotation separation of apatite from quartz; the adsorption mechanisms between LPDC and two mineral surfaces were investigated by Fourier transform infrared spectrometer (FTIR), zeta potential measurements and X-ray photoelectron spectroscopy (XPS) analysis. The micro-flotation tests showed that LPDC exhibited excellent flotation performance. When the pulp was at natural pH and LPDC concentration was 25 mg/L, the apatite concentrate with a P2O5 recovery of 95.45% and P2O5 grade of 38.94% could be obtained from artificially mixed minerals. FTIR, zeta potential, and XPS analysis indicated that the adsorption of LPDC onto quartz surface is stronger than that onto apatite surface; meanwhile, the adsorption of LPDC onto quartz surface is mainly provided by electrostatic force and hydrogen bonding.
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