The extraction of lithium from aqueous solutions of LiNTf2 and LiCl salts using benzo-15-crown-5 ether (B15C5) as an extractant in [C8mim][NTf2] ionic liquid was studied. The transition of the extractant into the aqueous phase and the distribution of Cl− ions during lithium extraction from LiCl solutions were determined. LiNTf2 complexes with B15C5 with different LiNTf2:B15C5 ratios were isolated for the first time and characterized via X-ray diffraction and IR spectroscopy. Differences in the extraction process of LiCl and LiNTf2 were determined via an infrared spectroscopic study of the extraction systems
It is important to find an effective way to separate lithium from the mother liquor obtained by the ...
A sustainable supply of lithium is essential for the development of modern electrical devices. These...
It is important to find an effective way to separate lithium from the mother liquor obtained by the ...
Lithium recovery from alkaline brine was carried out by solvent extraction (SX) using a hydroxyl-fun...
International audienceThis paper reports the liquid-liquid extraction behavior of lithium ions from ...
A fluoride-free ionic liquid 1-butyl-3-methylimidazolium phosphotungstate ([Bmim]3PW12O40) was synth...
A green liquid-liquid extraction (LLE) system was developed for the recovery of lithium (Li+) from s...
International audienceSolvent extraction of lithium ions from sulfuric acid solutions was investigat...
In this study, the theoretical design of ionic liquids (ILs) for predicting selective extraction of ...
International audienceThe recovery of lithium from brines is a major field of study with an increase...
The solvent extraction of Li+ by Cyanex 923 was investigated upon the addition of different imidazol...
The recovery of valuable elements such as Li, Co, and Ni from spent lithium-ion batteries is essenti...
The growing demand for lithium necessitates the development of an efficient process to recover it fr...
The high acidity of stripping is one of the major problems that hinder the industrialization of the ...
As shown by survey experiments, 14-crown-4 ethers bearing certain aliphatic substituents exhibit str...
It is important to find an effective way to separate lithium from the mother liquor obtained by the ...
A sustainable supply of lithium is essential for the development of modern electrical devices. These...
It is important to find an effective way to separate lithium from the mother liquor obtained by the ...
Lithium recovery from alkaline brine was carried out by solvent extraction (SX) using a hydroxyl-fun...
International audienceThis paper reports the liquid-liquid extraction behavior of lithium ions from ...
A fluoride-free ionic liquid 1-butyl-3-methylimidazolium phosphotungstate ([Bmim]3PW12O40) was synth...
A green liquid-liquid extraction (LLE) system was developed for the recovery of lithium (Li+) from s...
International audienceSolvent extraction of lithium ions from sulfuric acid solutions was investigat...
In this study, the theoretical design of ionic liquids (ILs) for predicting selective extraction of ...
International audienceThe recovery of lithium from brines is a major field of study with an increase...
The solvent extraction of Li+ by Cyanex 923 was investigated upon the addition of different imidazol...
The recovery of valuable elements such as Li, Co, and Ni from spent lithium-ion batteries is essenti...
The growing demand for lithium necessitates the development of an efficient process to recover it fr...
The high acidity of stripping is one of the major problems that hinder the industrialization of the ...
As shown by survey experiments, 14-crown-4 ethers bearing certain aliphatic substituents exhibit str...
It is important to find an effective way to separate lithium from the mother liquor obtained by the ...
A sustainable supply of lithium is essential for the development of modern electrical devices. These...
It is important to find an effective way to separate lithium from the mother liquor obtained by the ...