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Enhanced Capacity and Stability for the Separation of Cesium in Electrically Switched Ion Exchange

A. F. Tawfic, S. E. Dickson, Y. Kim, W. Mekky

Fusion Science and Technology / Volume 67 / Number 3 / April 2015 / Pages 608-611

Proceedings of TRITIUM 2013 / dx.doi.org/10.13182/FST14-T91

First Online Publication:March 6, 2015
Updated:April 2, 2015

Electrically switched ion exchange (ESIX) can be used to separate ionic contaminants from industrial wastewater, including that generated by the nuclear industry. The ESIX method involves sequential application of reduction and oxidation potentials to an ion exchange film to induce the respective loading and unloading of cesium. This technology is superior to conventional methods (e.g electrodialysis reversal or reverse osmosis) as it requires very little energy for ionic separation. In previous studies, ESIX films have demonstrated relatively low ion exchange capacities and limited film stabilities over repeated potential applications. In this study, the methodology for the deposition of electroactive films (nickel hexacyanoferrate) on nickel electrodes was modified to improve the ion exchange capacity for cesium removal using ESIX. Cyclic voltammetry was used to investigate the ion exchange capacity and stability. Scanning electron microscopy (SEM) was used to characterize the modified film surfaces. Additionally, the films were examined for the separation of cesium ions. This modified film preparation technique enhanced the ion exchange capacity and improves the film stability compared to previous methods for the deposition of ESIX films.