Jianguo Cai, Aimin Li, Hongyan Shi, Zhenghao Fei, Chao Long, Quanxing Zhang
State Key Laboratory of Pollution Control and Resources Reuse, School of the Environment, Nanjing University, Nanjing 210093, PR China.
J Hazard Mater. 2005 Sep 30;124(1-3):173-80. doi: 10.1016/j.jhazmat.2005.05.001.
In this paper a new bifunctional polymeric resin (LS-2) was synthesized by introducing sulfonic groups onto the surface of the resin during the post-crossing of chloromethyl low crosslinking macroporous poly-styrene resin, and the comparison of the adsorption properties of LS-2 with Amberlite XAD-4 toward aniline and 4-methylaniline in aqueous solutions was made. The study focuses on the static equilibrium adsorption behaviors, the adsorption thermodynamics, and the column dynamic adsorption and desorption profiles. Freundlich model gives a perfect fitting to the isotherm data. Although the specific surface area of LS-2 is lower than that of Amberlite XAD-4, the adsorbing capacities for these two adsorbates on LS-2 are higher than those on Amberlite XAD-4 within the temperature range 288-318 K, which is contributed to microporous structure and the polar groups on the network of LS-2 resins. The adsorption for aniline or 4-methylaniline on LS-2 was proved to be an endothermic process and increasing temperature was favorable. From the studies on the adsorption thermodynamics, static equilibrium adsorption, and the desorption conditions, an important conclusion can be drawn that the adsorption for aniline or 4-methylaniline on the LS-2 is a coexistence process of physical adsorption and chemical transition.
本文通过在氯甲基低交联大孔聚苯乙烯树脂后交联过程中向树脂表面引入磺酸基团,合成了一种新型双功能聚合物树脂(LS-2),并比较了LS-2与Amberlite XAD-4在水溶液中对苯胺和对甲苯胺的吸附性能。研究重点在于静态平衡吸附行为、吸附热力学以及柱动态吸附和解吸曲线。Freundlich模型对等温线数据拟合良好。尽管LS-2的比表面积低于Amberlite XAD-4,但在288 - 318 K温度范围内,LS-2对这两种吸附质的吸附容量高于Amberlite XAD-4,这归因于LS-2树脂网络上的微孔结构和极性基团。结果表明,LS-2对苯胺或对甲苯胺的吸附是一个吸热过程,升高温度有利于吸附。通过对吸附热力学、静态平衡吸附以及解吸条件的研究,可以得出一个重要结论:LS-2对苯胺或对甲苯胺的吸附是物理吸附和化学转变共存的过程。