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Solvent-assisted synthesis of potassium copper hexacyanoferrate embedded 3D-interconnected porous hydrogel for highly selective and rapid cesium ion removal

机译:溶剂辅助合成六氰基铁酸钾铜嵌入三维互连多孔水凝胶,用于高选择性和快速的铯离子去除

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摘要

Potassium copper hexacyanoferrate-embedded poly(vinyl alcohol)-citric acid hydrogel film (HPC) was prepared via a two-step method of Cu immobilization, followed by the diffusion of potassium hexacyanoferrate accelerated by acetone evaporation. The diffusion-derived KCuHCF formation in the preformed hydrogel facilitated the preservation of the 3D-interconnected hydrogel structure and dispersion of the KCuHCF nanoparticles. Using acetone as a non-solvent, reverse diffusion of the incorporated Cu in the hydrogel matrix was hindered; hence a large amount of KCuHCF was loaded in the matrix. The HPC exhibited substantially enhanced Cs+ removal properties in terms of adsorption capacity, kinetics and selectivity. From the adsorption isotherm, the HPC showed a very high Cs+ uptake of 667 mg/g KCuHCF. Moreover, the adsorbent revealed stable and high Cs+ removal efficiency of 99.9% across a wide pH range from 2 to 10. The kinetics of Cs+ removal was remarkably rapid with 99.5% removal achieved within 30 min from a dilute Cs+ solution (9.18 ppm). When using seawater, the HPC exhibited almost unaltered Cs+ removal efficiency above 99.5%, and high distribution coefficient Kd value of 7.7 × 105 ml/g at an extremely low Cs+ concentration (0.67 ppm, V/m = 1000 ml/g), which highlighted the tremendous affinity for Cs+.
机译:通过两步固定铜的方法,制备了嵌入六氰合铁酸铜钾的聚乙烯醇-柠檬酸水凝胶膜(HPC),然后通过丙酮蒸发加速了六氰合铁酸钾的扩散。在预先形成的水凝胶中扩散衍生的KCuHCF的形成促进了3D互连水凝胶结构的保存和KCuHCF纳米粒子的分散。使用丙酮作为非溶剂,阻止了掺入的铜在水凝胶基质中的反向扩散。因此,大量的KCuHCF被加载到基质中。在吸附容量,动力学和选择性方面,HPC表现出显着增强的Cs +去除性能。根据吸附等温线,HPC显示出非常高的Cs +吸收量,为667 mg / g KCuHCF。此外,该吸附剂在2至10的宽pH范围内显示出99.9%的稳定而高的Cs +去除效率。Cs+的去除动力学非常迅速,从稀Cs +溶液(9.18 ppm)在30分钟内达到了99.5%的去除率。当使用海水时,HPC在极低的Cs +浓度(0.67 ppm,V / m = 1000 ml / g)下表现出几乎不变的Cs +去除效率,高于99.5%,高分配系数Kd值为7.7×105 ml / g。强调了对Cs +的巨大亲和力。

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