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- W2319208940 abstract "The mean concentrations in the resin-phase with time in a ternary system (Na+, Zn2+, and Ce3+), in which the ionic valence is different from each other, were measured under the condition of intraparticle diffusion controlling. The results were compared with the theory which we have analyzed according to the Nernst-Planck equation. In [R⋅Na+] + (Zn2++Ce3+) and [R⋅Zn2+] + (Na++Ce3+) systems, the mean concentration of the faster ion in the two ions, which diffused from the liquid-phase to the resin particle, showed a peak. These are similar to (H+, Na+, and Zn2+) system, which we have reported. Theoretical values agreed reasonably well with the data in [R⋅a+] + (Zn2++Ce3+) . In [R⋅Zn2+] + (Na++Ce3+) and [R⋅Ce3+] + (Na++Zn2+) systems, theoretical values showed similar behaviour to the data but the theoretical ion exchange rate is faster than the data. This is different from (H+, Na+, and Zn2+) system, in which the theoretical curves agreed well with the data in any type of the combination of the three ions. These results may suggest that in the ternary system which consists of monovalent, bivalent, and trivalent ions, there are some types of combination of ions to which the theory can not be applied and the model should be corrected by considering more complicated factors." @default.
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- W2319208940 date "1991-01-01" @default.
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- W2319208940 title "Intraparticle Ion-Exchange Mass Transfer in Ternary System (Na+, Zn2+, Ce3+)" @default.
- W2319208940 doi "https://doi.org/10.5182/jaie.2.12" @default.
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