[1] |
XIE F, ZHANG T A, DREISINGER D, et al. A critical review on solvent extraction of rare earths from aqueous solutions[J]. Miner Eng, 2014, 56:10-28.
|
[2] |
YIN X M, WANG Y X, BAI X J, et al. Rare earth separations by selective borate crystallization[J]. Nat Commun, 2017, 8:14438.
|
[3] |
徐光宪. 稀土[M]. 第2版. 北京:冶金工业出版社, 1995:211-218.
|
|
XU G X. Rare Earth[M]. Beijing:Metallurgical Industry Press, 1995:211-218.
|
[4] |
ZOU D, CHEN J, LI D Q. Separation chemistry and clean technique of cerium (Ⅳ): a review[J]. J Rare Earths, 2014, 32(8):681-685.
|
[5] |
龙志奇, 黄小卫, 黄文梅, 等. 二(2-乙基己基)磷酸从含氟稀土硫酸溶液中萃取铈的机制[J]. 中国稀土学报, 2000, 18(1):18-20.
|
|
LONG Z Q, HUANG X W, HUANG W M, et al. Ce4+Extraction mechanism from rare earth sulfate solution containing fluorine with DEHPA[J]. J Chinese Rare Earths Soc, 2000, 18(1):18-20.
|
[6] |
ZHU Z W, ZHAO N, LONG Z Q, et al. New environment-friendly approach for bastnasite metallurgic treatment (i): extraction of tetravalent cerium from sulphuric acid medium with di (2-ethylhexyl) phosphoric acid[J]. J Rare Earth, 2005, 23(2):178-182.
|
[7] |
WANG L S, YU Y, HUANG X W, et al. Toward greener comprehensive utilization of bastnaesite: simultaneous recovery of cerium, fluorine, and thorium from bastnaesite leach liquor using HEH (EHP)[J]. Chem Eng J, 2013, 215-216:162-167.
|
[8] |
LIAO W P, YU G H, LI D Q. Solvent extraction of cerium (Ⅳ) and fluorine (I) from sulphuric acid leaching of bastnasite by Cyanex923[J]. Solvent Extr Ion Exch, 2001, 19(2):243-259.
|
[9] |
ZHAO J M, MENG S L, LI D Q. Coordination reactions in the extraction of cerium (Ⅳ) and fluorine (I) by DEHEHP from mixed nitric acid and hydrofluoric acid solutions[J]. Solvent Extr Ion Exch, 2004, 22(5):813-831.
|
[10] |
LI K, CHEN J, ZOU D, et al. A novel extractant 2-ethylhexyl bis (2-ethylhexyl) phosphinate for cerium (Ⅳ) and fluorine extraction from nitric acid system[J]. Hydrometallurgy, 2019, 186:143-150.
|
[11] |
LI K, CHEN J, ZOU D, et al. Recovery of cerium (Ⅳ) in acidic nitrate solutions by solvent extraction with a novel extractant tris (2-ethylhexyl) phosphine oxide[J]. Hydrometallurgy, 2019, 190:105155.
|
[12] |
YANG H L, CHEN J, ZHANG D L, et al. Kinetics of cerium (Ⅳ) and fluoride extraction from sulfuric solutions using bifunctional ionic liquid extractant (Bif-ILE)[A336][P204][J]. Trans Nonferr Met Soc, 2014, 24(6):1937-1945.
|
[13] |
ZHANG D L, WANG W, DENG Y F, et al. Extraction and recovery of cerium (Ⅳ) and fluorine (I) from sulfuric solutions using bifunctional ionic liquid extractants[J]. Chem Eng J, 2012, 179:19-25.
|
[14] |
李德谦, 王忠怀, 曾广赋. 伯胺N1923从硫酸溶液中萃取Ce (Ⅳ)的机理[J]. 核化学与放射化学, 1984, 6(3):153-160.
|
|
LI D Q, WANG Z H, ZENG G F. The mechanism of extraction of Ce (Ⅳ) from sulphuric acid solution by primary amine N1923[J]. Nucl Chem Radio Chem, 1984, 6(3):153-160.
|
[15] |
LIU J, WANG Y L, LI D Q. Extraction kinetics of cerium (Ⅳ) from sulfuric acid medium by the primary amine N1923 using a constant interfacial area cell with laminar flow[J]. J Chem Technol Biotechnol, 2007, 82:949-955.
|
[16] |
YAN Y F, CHEN J, LI K, et al. A novel neutral-base coupling synergistic extraction system of Cyanex923 and primary amine N1923 for the recovery of cerium (Ⅳ) and fluorine from sulfuric acid medium[J]. Sep Purif Technol, 2020, 258:118026.
|