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The results showed that U could be efficiently separated from lanthanides with high separation factors (SFU/La = 1.1 × 104, SFU/Ce = 1.6 × 105, and SFU/Sm = 2.5 × 104).
Very high separation factors from water were observed (∼104).
Distribution coefficient and separation factors of La3+ and Sm3+ on polyacrylamide stannic molybdophosphate were determined.
The average values of the separation factors were obtained for these two systems.
The crosslinked membranes exhibited higher separation factors of benzene over cyclohexane than the corresponding uncrosslinked ones.
These performance metrics are expressed in terms of the recovery rate and separation factors, respectively.
The distribution coefficients and separation factors for these systems are also reported.
The effect of combined ion exchange on separation factors is also calculated and discussed.
The corresponding separation factors were in the range of 4 21.
A first application to CO2/H2 separation has been achieved, reaching separation factors close to 10.
Distribution coefficients and separation factors were calculated to evaluate the extracting performance of methyl butyl ketone.
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