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Sorption/desorption of radionickel on/from Na-montmorillonite: Kinetic and thermodynamic studies

机译:钠/蒙脱石上放射性镍的吸附/解吸:动力学和热力学研究

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In this work, Na-montmorillonite was used as a novel adsorbent for the sorption of Ni(II) from aqueous solutions. The sorption and desorption of Ni(II) on Na-montmorillonite was investigated as the function of pH, ionic strength, Ni(II) concentrations and temperature. The results indicated that the sorption of Ni(II) on Na-montmorillonite was strongly dependent on pH, ionic strength and temperature. The sorption of Ni(II) increases slowly from 22.1 to 51.4% at pH range 2-6.5, abruptly at pH 6.5-9, and at last maintains high level with increasing pH at pH > 9 in 0.1 mol/L NaNO _3 solutions. The Ni(II) kinetic sorption on Na-montmorillonite was fitted by the pseudo-second-order model better than by the pseudo-first-order model and the experimental data implies that Ni(II) sorption on montmorillonite were mainly controlled by the film diffusion mechanism. The Langmuir, Freundlich and D-R models were used to simulate the sorption data at three different temperatures (298.15, 318.15 and 338.15 K) and the results indicated that Langmuir model simulates the experimental data better than Freundlich and D-R models. The sorption-desorption isotherm of Ni(II) on montmorillonite suggested that the sorption is irreversible. The irreversible sorption of Ni(II) on montmorillonite indicates that montmorillonite can be used to pre-concentration and solidification of Ni(II) from large volumes of solution and to storage Ni(II) ions stably.
机译:在这项工作中,钠蒙脱石被用作从水溶液中吸附Ni(II)的新型吸附剂。研究了镍(II)在蒙脱土上的吸附和解吸随pH,离子强度,镍(II)浓度和温度的变化。结果表明,Ni(II)在钠蒙脱石上的吸附强烈依赖于pH值,离子强度和温度。在pH范围2-6.5时,Ni(II)的吸附从22.1%缓慢增加到51.4%,在pH 6.5-9时突然增加,最后在0.1 mol / L NaNO _3溶液中随着pH值> 9的增加而保持高水平。拟二阶模型比拟一阶模型更好地拟合了蒙脱土对Ni(II)的动力学吸附,实验数据表明蒙脱土对Ni(II)的吸附主要受薄膜控制。扩散机制。用Langmuir,Freundlich和D-R模型模拟了三种不同温度(298.15、318.15和338.15 K)下的吸附数据,结果表明Langmuir模型比Freundlich和D-R模型更好地模拟了实验数据。 Ni(II)在蒙脱土上的吸附-解吸等温线表明吸附是不可逆的。 Ni(II)在蒙脱石上的不可逆吸附表明,蒙脱石可用于从大量溶液中预浓缩和固化Ni(II)并稳定地存储Ni(II)离子。

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