Uphill transport of rare-earth metals through a highly stable supported liquid membrane based on an ionic liquid

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Abstract

We have developed a highly stable supported liquid membrane based on ionic liquids (ILs) for the separation of rare-earth metals, employing N,N-dioctyldiglycol amic acid as a mobile carrier. The quantitative transport of Y and Eu through the membrane was successfully attained, and separation from metal impurities, Zn, was efficiently accomplished. A membrane stable enough for long-term operation was constructible from imidazolium-based ILs having a longer alkyl chain, such as octyl or dodecyl groups in an imidazolium cation. 2010 © The Japan Society for Analytical Chemistry.

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Kubota, F., Shimobori, Y., Koyanagi, Y., Shimojo, K., Kamiya, N., & Goto, M. (2010). Uphill transport of rare-earth metals through a highly stable supported liquid membrane based on an ionic liquid. Analytical Sciences, 26(3), 289–290. https://doi.org/10.2116/analsci.26.289

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