改性海泡石作为循环使用的吸附剂在酸性溶液中吸附Pd(II)的应用

来源期刊:中国有色金属学报(英文版)2020年第5期

论文作者:肖勇 冯宁宁 王润华 董海刚 郭子文 崔浩 武海艳 刘新星 谢建平

文章页码:1375 - 1386

关键词:改性海泡石;钯;吸附;脱附;动力学

Key words:modified sepiolite; palladium; adsorption; desorption; dynamics

摘    要:研究以改性海泡石作为吸附剂从酸性溶液中回收Pd(II)的吸附特性和机理;通过等温模型、动力学和热力学模型分析改性海泡石对Pd(II)的吸附特性;利用SEM-EDS、TEM和XPS技术研究改性海泡石对Pd(II)的吸附机理。Langmuir模型表明,当温度为30 °C时,改性海泡石对Pd(II)的最大吸附量为322.58 mg/g。动力学实验结果表明,准二级动力学模型能较好地模拟改性海泡石对Pd(II)的吸附过程,化学吸附为改性海泡石吸附Pd(II)的控速步骤。当Pd(II)的初始浓度为100 mg/L时,1 g/L改性海泡石可吸附99%的Pd(II)。吸附-脱附循环实验结果表明,改性海泡石具有良好的稳定性和重复使用性。本研究结果表明,改性海泡石是一种可高效且经济的Pd(II) 回收材料。

Abstract: The adsorption characteristics and mechanisms of modified sepiolite as an adsorbent to recover Pd(II) from acidic solutions were studied. The Pd(II) adsorption properties were analyzed through isotherm, kinetic and thermodynamic models. In addition, SEM-EDS, TEM and XPS were applied to investigating the Pd(II) adsorption mechanisms onto modified sepiolite. The equilibrium data were well fitted to Langmuir isotherm model with maximum Pd(II) adsorption capacity of 322.58 mg/g at 30 °C. The kinetic data could be satisfactorily simulated by the pseudo- second order model, indicating that the rate-controlling step was chemical adsorption. 99% of Pd(II) could be recovered using 1 g/L modified sepiolite when initial concentration of Pd(II) was 100 mg/L. The results of reusability studies indicated the modified sepiolite had an acceptable stability and reusability. This study indicated that the modified sepiolite might be an efficient and cost-effective material for Pd(II) recovery.

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