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Simultaneous separation of iodide and cesium ions from dilute wastewater based on PPy/PTCF and NiHCF/PTCF electrodes using electrochemically switched ion exchange method

机译:基于PPy / PTCF和NiHCF / PTCF电极的电化学切换离子交换方法同时分离稀废水中的碘离子和铯离子

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Radioactive iodide (I-) and cesium (Cs+) ions were first simultaneously separated using electrochemically switched ion exchange (ESIX) method based on polypyrrole (PPy) and nickle hexacyanoferrate (NiHCF) films, which were chemically deposited on two porous three-dimensional carbon felts (PTCF), respectively. It was found that applied potential significantly facilitated the adsorption efficiency and the lower pH value was beneficial to the separation process. The maximum adsorption capacity of both ions approached above 95.3 mg/g. The adsorption ratios of I- ion kept above 88% at pH value ranged from 1.89 to 936. The ultimate I- and Cs+ ion desorption rates were proximately 87% and 90%, respectively. Such separation was suggested to proceed in two main steps: an ESIX step in which electrochemical oxidation of PPy and electrochemical reduction of NiHCF occurred rapidly (the fast step), and an IX step which was controlled by the gradients of ion concentrations between films and bulk solution (the slow step). The separation factors (alpha(I)(CI) = 90 and alpha(cs)(Na) = 458.8) showed high selectivity for I- (PPI film) and Cs+ (NiHCF film) ions over Cl- and Na+ ions, respectively. And five consecutive adsorption-desorption experiments indicated that the NiHCF/PTCF and PPy/PTCF electrodes can be effectively regenerated and are stable. It is expected that the developed method can be taken as a promising technology for actual wastewater treatment. (C) 2014 Elsevier B.V. All rights reserved.
机译:首先使用基于聚吡咯(PPy)和六氰基高铁酸盐(NiHCF)膜的电化学开关离子交换(ESIX)方法同时分离放射性碘(I-)和铯(Cs +)离子,然后化学沉积在两个多孔三维碳上毛毡(PTCF)。发现施加的电势显着促进了吸附效率,而较低的pH值有利于分离过程。两种离子的最大吸附容量接近95.3 mg / g。在pH值下,I-离子的吸附率保持在88%以上,范围为1.89至936。最终的I-和Cs +离子解吸率分别接近87%和90%。建议这种分离过程可分为两个主要步骤:一个ESIX步骤(其中快速发生PPy的电化学氧化和NiHCF的电化学还原)(一个快速步骤),以及一个IX步骤,该步骤由薄膜和本体之间的离子浓度梯度控制解决方案(缓慢的步骤)。分离因子(alpha(I)(CI)= 90和alpha(cs)(Na)= 458.8)分别显示了对I-(PPI膜)和Cs +(NiHCF膜)离子对Cl-和Na +离子的高选择性。五个连续的吸附-解吸实验表明,NiHCF / PTCF和PPy / PTCF电极可以有效地再生并且稳定。预期该开发方法可以作为实际废水处理的有前途的技术。 (C)2014 Elsevier B.V.保留所有权利。

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