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首页> 外文期刊>Fusion Science and Technology >ENHANCED CAPACITY AND STABILITY FOR THE SEPARATION OF CESIUM IN ELECTRICALLY SWITCHED ION EXCHANGE
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ENHANCED CAPACITY AND STABILITY FOR THE SEPARATION OF CESIUM IN ELECTRICALLY SWITCHED ION EXCHANGE

机译:电开关离子交换中铯分离的增强能力和稳定性

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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.
机译:电开关离子交换(ESIX)可用于从工业废水中分离离子污染物,包括核工业产生的污染物。 ESIX方法涉及将还原和氧化电势顺序施加到离子交换膜上,以引起铯的相应加载和卸载。该技术优于常规方法(例如电渗析逆转或反渗透),因为它只需很少的能量即可进行离子分离。在以前的研究中,ESIX膜在反复潜在的应用中已证明相对较低的离子交换能力和有限的膜稳定性。在这项研究中,修改了在镍电极上沉积电活性膜(六氰合铁酸镍)的方法,以提高使用ESIX去除铯的离子交换能力。循环伏安法用于研究离子交换能力和稳定性。使用扫描电子显微镜(SEM)表征改性膜的表面。另外,检查膜中铯离子的分离。与以前的ESIX膜沉积方法相比,这种改良的膜制备技术增强了离子交换能力并提高了膜稳定性。

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