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- W2585402147 abstract "The potential of liquid-liquid mineral separation mediated by ionic liquids (ILs) to beneficiate rare earth (RE) bearing minerals was investigated for the first time. Liquid-liquid separation tests were performed on actual RE-bearing ores whereas the role of ionic liquids was exposed using model monazite, bastnäsite, calcite and dolomite single minerals. The multiphase beneficiation system consisted of aqueous pulps in which IL/kerosene and IL/n-hexane non-polar phases were emulsified using three types of phosphonium/ammonium ionic liquids to evaluate their chelation potential. The aqueous pulp pH played a crucial role in terms of mineral recoveries with the highest RE mineral recoveries achieved at pH 4–7. Also, the newly proposed beneficiation method was found to outperform micro-flotation of the same minerals in terms of selectivity. Zeta potential measurements, Fourier transform infrared spectroscopy, and density functional theory simulations were used to interpret the mechanisms governing this new mineral separation route. The ionic liquid anionic moiety was demonstrably found to directly interact through formation of covalent bonds with the metal cation active centers, contrary to the cationic moiety which at most was involved in weaker “non-surface” Coulombic/van de Waals interactions as ion-pair co-ion. Hence with regard to the potential of ionic liquids in minerals beneficiation, liquid-liquid mineral separation could be envisaged as a new alternative for RE mineral separation instead of flotation." @default.
- W2585402147 created "2017-02-10" @default.
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- W2585402147 date "2017-05-01" @default.
- W2585402147 modified "2023-10-18" @default.
- W2585402147 title "Liquid-liquid mineral separation via ionic-liquid complexation of monazite and bastnäsite—An alternate route for rare-earth mineral beneficiation" @default.
- W2585402147 cites W1499763710 @default.
- W2585402147 cites W1522446686 @default.
- W2585402147 cites W1824481961 @default.
- W2585402147 cites W1951769953 @default.
- W2585402147 cites W1964969711 @default.
- W2585402147 cites W1966427603 @default.
- W2585402147 cites W1972984340 @default.
- W2585402147 cites W1974251370 @default.
- W2585402147 cites W1979250008 @default.
- W2585402147 cites W1982226327 @default.
- W2585402147 cites W1984320944 @default.
- W2585402147 cites W1988508337 @default.
- W2585402147 cites W1989335998 @default.
- W2585402147 cites W1991720508 @default.
- W2585402147 cites W1994848473 @default.
- W2585402147 cites W1996342614 @default.
- W2585402147 cites W1998496117 @default.
- W2585402147 cites W1999352120 @default.
- W2585402147 cites W2001916763 @default.
- W2585402147 cites W2007988437 @default.
- W2585402147 cites W2008126194 @default.
- W2585402147 cites W2009310527 @default.
- W2585402147 cites W2011550640 @default.
- W2585402147 cites W2011576100 @default.
- W2585402147 cites W2013430614 @default.
- W2585402147 cites W2014827502 @default.
- W2585402147 cites W2017036160 @default.
- W2585402147 cites W2017999968 @default.
- W2585402147 cites W2020190787 @default.
- W2585402147 cites W2022296687 @default.
- W2585402147 cites W2023108478 @default.
- W2585402147 cites W2027242802 @default.
- W2585402147 cites W2030982966 @default.
- W2585402147 cites W2031223177 @default.
- W2585402147 cites W2033077765 @default.
- W2585402147 cites W2033993142 @default.
- W2585402147 cites W2034627171 @default.
- W2585402147 cites W2035847609 @default.
- W2585402147 cites W2036589691 @default.
- W2585402147 cites W2037821749 @default.
- W2585402147 cites W2049873544 @default.
- W2585402147 cites W2050390267 @default.
- W2585402147 cites W2051261713 @default.
- W2585402147 cites W2057747304 @default.
- W2585402147 cites W2060314424 @default.
- W2585402147 cites W2074174870 @default.
- W2585402147 cites W2076076242 @default.
- W2585402147 cites W2078091759 @default.
- W2585402147 cites W2081000297 @default.
- W2585402147 cites W2083127319 @default.
- W2585402147 cites W2086352371 @default.
- W2585402147 cites W2088534417 @default.
- W2585402147 cites W2089863370 @default.
- W2585402147 cites W2099086165 @default.
- W2585402147 cites W2100322492 @default.
- W2585402147 cites W2103294448 @default.
- W2585402147 cites W2106628142 @default.
- W2585402147 cites W2118978795 @default.
- W2585402147 cites W2122250145 @default.
- W2585402147 cites W2137906756 @default.
- W2585402147 cites W2141498256 @default.
- W2585402147 cites W2147013247 @default.
- W2585402147 cites W2154789822 @default.
- W2585402147 cites W2154978130 @default.
- W2585402147 cites W2161070085 @default.
- W2585402147 cites W2161219505 @default.
- W2585402147 cites W2194157282 @default.
- W2585402147 cites W2225027752 @default.
- W2585402147 cites W2233458241 @default.
- W2585402147 cites W2288953700 @default.
- W2585402147 cites W2307457721 @default.
- W2585402147 cites W2321091595 @default.
- W2585402147 cites W2342472281 @default.
- W2585402147 cites W2428559519 @default.
- W2585402147 cites W2430805026 @default.
- W2585402147 cites W2465479499 @default.
- W2585402147 cites W3021199934 @default.
- W2585402147 cites W2011398712 @default.
- W2585402147 doi "https://doi.org/10.1016/j.colsurfa.2017.01.079" @default.
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