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水溶液中砷在合成沸石上的吸附

Arsenic adsorption from aqueous solution on synthetic zeolites.

作者信息

Chutia Pratap, Kato Shigeru, Kojima Toshinori, Satokawa Shigeo

机构信息

Department of Materials and Life Science, Seikei University, Tokyo 180-8633, Japan.

出版信息

J Hazard Mater. 2009 Feb 15;162(1):440-7. doi: 10.1016/j.jhazmat.2008.05.061. Epub 2008 May 21.

Abstract

The adsorption of arsenic from aqueous solution on synthetic zeolites H-MFI-24 (H24) and H-MFI-90 (H90) with MFI topology has been investigated at room temperature (r.t) applying batch equilibrium techniques. The influences of different sorption parameters such as contact time, solution pH, initial arsenic concentration and temperature were also studied thoroughly in order to optimize the reaction conditions. The adsorption of arsenic on to H24 and H90 follows the first-order kinetics and equilibrium time was about 100min for both the adsorbents. The first-order rate constant (k), 4.7 x 10(-3)min(-1) for H90 is more than two times higher in magnitude compared to 2.1 x 10(-3)min(-1) for H24. Adsorption performance of H90 is higher compared to H24 due to it's highly mesoporous nature which in turn accelerates the diffusion process during adsorption. As(V) sorption capacity derived from Langmuir isotherm for H24 and H90 are 0.0358 and 0.0348gg(-1), respectively. Arsenic uptake was also quantitatively evaluated using the Freundlich and Dubinin-Kaganer-Radushkevich (DKR) isotherm models. Ion exchange between adsorbent's terminal aluminol groups with different predominant forms of arsenate in solution is one of the various important reactions occurred during adsorption process.

摘要

采用间歇平衡技术,在室温下研究了具有MFI拓扑结构的合成沸石H-MFI-24(H24)和H-MFI-90(H90)对水溶液中砷的吸附。为了优化反应条件,还深入研究了不同吸附参数如接触时间、溶液pH值、初始砷浓度和温度的影响。砷在H24和H90上的吸附遵循一级动力学,两种吸附剂的平衡时间均约为100分钟。H90的一级速率常数(k)为4.7×10⁻³ min⁻¹,其大小是H24的2.1×10⁻³ min⁻¹的两倍多。H90的吸附性能高于H24,因为其高度介孔的性质反过来加速了吸附过程中的扩散过程。根据Langmuir等温线,H24和H90对As(V)的吸附容量分别为0.0358和0.0348 gg⁻¹。还使用Freundlich和Dubinin-Kaganer-Radushkevich(DKR)等温线模型对砷的吸附量进行了定量评估。吸附剂末端铝醇基团与溶液中不同主要形式的砷酸盐之间的离子交换是吸附过程中发生的各种重要反应之一。

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