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Kinetic and isothermal adsorption properties of strontium and cesium ions by zeolitic materials synthesized from Jeju volcanic rocks

机译:济州火山岩中合成的锶和铯离子的动力学和等温吸附性能

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摘要

The study focused on the removal of Sr and Cs ions in aqueous solutions by zeolitic materials synthesized from Jeju volcanic rocks using a fusion/hydrothermal method. The synthesis of the zeolitic materials was carried out using the fusion/hydrothermal method to reduce crystallization time. Morphological structures of the zeolitic materials could be confirmed to be the Na-A zeolite structure and crystalline with the chamfered-edged structure. In the adsorption experiment, as the initial concentrations of the Sr and Cs ions increased, it took longer to reach adsorption equilibrium. The adsorption kinetics and isotherms of Sr and Cs ions were predicted well by the pseudo-2nd-order and Langmuir isotherm models, respectively. The maximum adsorption capacities of Sr and Cs ions by the Langmuir isotherm model were 154.8 mg/g and 144.0 mg/g, respectively. The zeolitic materials prepared in this study is considered as an effective adsorbent for removing Sr and Cs ions in aqueous solutions.
机译:该研究的重点是使用融合/水热法从Jeju火山岩中合成的沸石材料中除去Sr和Cs离子。 使用熔融/水热法进行沸石材料的合成,以减少结晶时间。 可以证实沸石材料的形态学结构是Na-A沸石结构和具有倒角结构的结晶。 在吸附实验中,随着Sr和Cs离子的初始浓度增加,达到吸附平衡需要更长时间。 Pseudo-2nd阶和Langmuir等温模型分别预测了Sr和Cs离子的吸附动力学和等温度。 朗米尔等温模型Sr和Cs离子的最大吸附容量分别为154.8mg / g和144.0mg / g。 本研究制备的沸石材料被认为是用于在水溶液中除去Sr和Cs离子的有效吸附剂。

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