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聚二硫二丙烷磺酸钠修饰的阳极氧化铝膜去除重金属离子。

Polyrhodanine modified anodic aluminum oxide membrane for heavy metal ions removal.

机构信息

WCU Program of Chemical Convergence for Energy and Environment, School of Chemical and Biological Engineering, College of Engineering, Seoul National University, 599 Gwanak-ro, Gwanak-gu, Seoul 151-742, Republic of Korea.

出版信息

J Hazard Mater. 2011 Mar 15;187(1-3):311-7. doi: 10.1016/j.jhazmat.2011.01.026. Epub 2011 Jan 14.

Abstract

Polyrhodanine was immobilized onto the inner surface of anodic aluminum oxide (AAO) membrane via vapor deposition polymerization method. The polyrhodanine modified membrane was applied to remove heavy metal ions from aqueous solution because polyrhodanine could be coordinated with specific metal ions. Several parameters such as initial metal concentration, contact time and metal species were evaluated systematically for uptake efficiencies of the fabricated membrane under continuous flow condition. Adsorption isotherms of Hg(II) ion on the AAO-polyrhodanine membrane were analyzed with Langmuir and Freundlich isotherm models. The adsorption rate of Hg(II) ion on the membrane was obeyed by a pseudo-second order equation, indicating the chemical adsorption. The maximum removal capacity of Hg(II) ion onto the fabricated membrane was measured to be 4.2 mmol/g polymer. The AAO-polyrhodanine membrane had also remarkable uptake performance toward Ag(I) and Pb(II) ions. Furthermore, the polyrhodanine modified membrane could be recycled after recovery process. These results demonstrated that the polyrhodanine modified AAO membrane provided potential applications for removing the hazardous heavy metal ions from wastewater.

摘要

聚并苯二硫腙通过气相沉积聚合方法固定在阳极氧化铝(AAO)膜的内表面上。聚并苯二硫腙修饰膜被应用于从水溶液中去除重金属离子,因为聚并苯二硫腙可以与特定的金属离子配位。在连续流动条件下,系统地评估了初始金属浓度、接触时间和金属种类等几个参数对所制备膜的去除效率的影响。采用 Langmuir 和 Freundlich 等温模型分析了 Hg(II)离子在 AAO-聚并苯二硫腙膜上的吸附等温线。Hg(II)离子在膜上的吸附速率符合准二级方程,表明这是化学吸附。测定了制备的膜对 Hg(II)离子的最大去除容量为 4.2mmol/g 聚合物。AAO-聚并苯二硫腙膜对 Ag(I)和 Pb(II)离子也具有显著的去除性能。此外,经过回收过程后,聚并苯二硫腙修饰膜可以回收利用。这些结果表明,修饰后的 AAO 膜为从废水中去除有害重金属离子提供了潜在的应用。

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