XXXI International Mineral Processing Congress 2024 Proceedings/Washington, DC/Sep 29–Oct 3 1323
Kumari, A., Sinha, M.K., Sahu, S.K. and Pandey, B.D.
2014. Extractive Searation of La and Nd using Ionic
Liquid as Extractant.18th International Conference on
Non-Ferrous Minerals &Metals. Tech 19:1–6.
Kumari, A., Sinha, M.K., Sahu, S.K and Pandey, B.D.
2016. Solvent Extraction and Separation of Trivalent
Lanthanides Using Cyphos IL 104, a Novel
Phosphonium Ionic Liquid as Extractant. Solvent
Extraction and Ion Exchange, 34:5, 469–484.
Larochelle, T. 2022. Process Development and Techno-
Economic Analysis for the Recovery of Rare Earth
Elements and Critical Materials from Acid Mine
Drainage. Blacksburg: Virginia Tech. pp. 125–153.
Liu, Y., Jeon, H. S., Lee, M. S., 2014. Solvent extraction of
Pr and Nd from chloride solution by the mixtures of
Cyanex 272 and amine extractants, Hydrometallurgy.
150, 61–67.
Mowafy, E.A. and Mohamed, D. 2015. Extraction and
separation of Nd(III), Sm(III), Dy(III), Fe(III), Ni(II),
and Cs(I) from concentrated chloride solutions with
N,N,N’,N’-tetra(2-ethylhexyl) diglycolamide as new
extractant. Journal of Rare Earths. 33:4 432–438.
Mowafy, E.A. and Mohamed, D. 2017. Extraction of
rare earth elements from nitrate solution using novel
unsymmetrical diglycolamide, Separation Science and
Technology. 52:6, 1006–1014.
Narita H. and Tanaka, M., 2013. Extraction of Sm(III)
and Nd(III) with N,N,N’,N’-tetrabutyl–3-oxy-
diglycolamidefrom hydrochloric acid. Solvent
Extraction Research and Development, 20, 115–121.
Panda, R., Jha, M.K., Hait, J., Kumar, G., Singh, R.J.,
Yoo, K., 2016. Extraction of lanthanum and neo-
dymium from leach liquor containing rare earth metals
(REMs). Hydrometallurgy. 165:1, 106–110.
Pavon, S., Fortuny, A., Coll, M.T. and Sastre, A.M. 2018.
Neodymium recovery from NdFeB magnet wastes
using Primene 81R·Cyanex 572 IL by solvent extrac-
tion. Journal of Environmental Management. 222,
359–367.
Peppard, D.F., Mason, G.W. and Maier, J.L., 1956.
Interrelationships in the solvent extraction behaviour
of scandium, thorium, and zirconium in certain tribu-
tyl phosphate-mineral acid systems. Journal of Inorganic
and Nuclear Chemistry, 3(3–4), pp.215–228.
Quinn, J.E., Soldenhoff, K.H., Stevens, G.W., and
Lengkeek, N.A. 2015. Solvent extraction of rare earth
elements using phosphonic/phosphinic acid mixtures.
Hydrometallurgy. 157, 298–305.
Stamberga, D., Healy, M.R., Bryantsev, V.S., Albisser, C.,
Karslyan, Y., Reinhart, B., Paulenova, A., Foster, M.,
Popova, I., Lyon, K., Moyer, B.A., and Jansone-
Popova, S. 2020. Structure Activity Relationship
Approach toward the Improved Separation of Rare-
Earth Elements Using Diglycolamides. Inorganic
Chemistry. 59:23, 17620–17630.
Verbaan, N., Bourricaudy, E., Grammatikopoulos, T.,
Johnson, M., Larochelle, E., Honan, S., Smith, K. and
Sixberry, R., 2017. A process flowsheet for the extrac-
tion of scandium from NioCorp’s Niobium/Scandium
Elk Creek deposit. COM2017–Hydrometallurgy of
Nickel-Cobalt. Vancouver, BC.
Wang, W., Yang, H., Cui, H., Zhang, D., Liu, Y. and
Chen, J., 2011. Application of Bifunctional Ionic
Liquid Extractants [A336][CA‑12] and [A336][CA-
100] to the Lanthanum Extraction and Separation
from Rare Earths in the Chloride Medium. Industrial
&Engineering Chemistry Research, 50:12, 7534–7541.
Yang J.H., Cui Y., Sun G.X., Ni.e., Y. Xia G.M. and
Zheng G.X. 2013. Extraction of Sm(III)and Nd(III)
with N,N,N’,N’-tetrabutyl-3-oxy-diglycolamide from
hydrochloric acid. Journal of the Serbian Chemical
Society. 78:1, 93–100.
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