Solvent extraction is a widely used separation technique in extractive metallurgy. A conventional solvent extraction system consists of an aqueous phase and an immiscible organic phase. In this work, we show that replacement of water by a polar organic solvent can lead to superior metal separations. Cobalt(II) and samarium(III) chlorides dissolved in water and ethylene glycol (EG), respectively, with LiCl as chloride source, were extracted by Aliquat 336 diluted in toluene. Both cobalt and samarium were extracted from the aqueous solutions, but cobalt was extracted more efficiently from the ethylene glycol solutions than from the aqueous solutions, whereas samarium was not extracted at all from the ethylene glycol solutions. As a result, co...
It is shown that rare earths can be distributed between two immiscible ionic liquids, allowing the t...
The less polar phase of liquid-liquid extraction systems has been studied extensively for improving ...
The solvent extraction of trivalent rare-earth ions and their separation from divalent transition me...
Solvent extraction is a widely used separation technique in extractive metallurgy. A conventional so...
© 2018 Elsevier B.V. SmCo permanent magnets are used in the automotive and aircraft industries. They...
An environmentally friendly process for the separation of the transition metals copper, cobalt, iron...
The separation of a mixture of rare earths by non-aqueous solvent extraction with two immiscible org...
Secondary resources are essential to maintain the supply of critical metals in our fast-developing s...
Secondary resources are essential to maintain the supply of critical metals in our fast-developing s...
The recovery of valuable metals such as Co, Cu, and Ni from spent lithium-ion batteries has attracte...
The proof-of-principle for the separation of metals by solvent extraction using two mutually immisci...
The ionic liquid trihexyl(tetradecyl)phosphonium thiocyanate has been used for the extraction of the...
The nonaqueous liquid-liquid extractions of zinc, cadmium and cobaltous ions were investigated betwe...
A green solvent extraction process for the separation of cobalt from nickel, magnesium and calcium i...
The solvent extraction behavior of a series of metal ions (Li+, Na+, K+, Mg2+, Ca2+, Mn2+, Fe3+, Co2...
It is shown that rare earths can be distributed between two immiscible ionic liquids, allowing the t...
The less polar phase of liquid-liquid extraction systems has been studied extensively for improving ...
The solvent extraction of trivalent rare-earth ions and their separation from divalent transition me...
Solvent extraction is a widely used separation technique in extractive metallurgy. A conventional so...
© 2018 Elsevier B.V. SmCo permanent magnets are used in the automotive and aircraft industries. They...
An environmentally friendly process for the separation of the transition metals copper, cobalt, iron...
The separation of a mixture of rare earths by non-aqueous solvent extraction with two immiscible org...
Secondary resources are essential to maintain the supply of critical metals in our fast-developing s...
Secondary resources are essential to maintain the supply of critical metals in our fast-developing s...
The recovery of valuable metals such as Co, Cu, and Ni from spent lithium-ion batteries has attracte...
The proof-of-principle for the separation of metals by solvent extraction using two mutually immisci...
The ionic liquid trihexyl(tetradecyl)phosphonium thiocyanate has been used for the extraction of the...
The nonaqueous liquid-liquid extractions of zinc, cadmium and cobaltous ions were investigated betwe...
A green solvent extraction process for the separation of cobalt from nickel, magnesium and calcium i...
The solvent extraction behavior of a series of metal ions (Li+, Na+, K+, Mg2+, Ca2+, Mn2+, Fe3+, Co2...
It is shown that rare earths can be distributed between two immiscible ionic liquids, allowing the t...
The less polar phase of liquid-liquid extraction systems has been studied extensively for improving ...
The solvent extraction of trivalent rare-earth ions and their separation from divalent transition me...