Qiu Yuping, Ling Fang
Department of Environmental Science and Technology, East China Normal University, 3663 Zhongshan Road North, Shanghai 200062, People's Republic of China.
Chemosphere. 2006 Aug;64(6):963-71. doi: 10.1016/j.chemosphere.2006.01.003. Epub 2006 Feb 14.
While synthetic polymeric sorbents effectively treat dye wastewaters by adsorption, the underlying mechanisms remain to be understood. This work determined the adsorption of an anionic dye by three polymers differing significantly in surface functionality. Surface functional groups of polymers were indicated in FTIR spectra and quantified by the Boehm titration. In reference to the commercial sorbent XAD-4 with a low degree of functionality, the laboratory synthesized NG-8 had primarily acidic functional groups, whereas its aminated product MN-8 had mainly basic amino groups. Electrophoresis determined the points of zero charge of 4.18, 3.23, and 4.51 for XAD-4, NG-8, and MN-8, respectively. The adsorption of Reactive Black 5 dye (RB5) by all the sorbents on a unit surface area basis increased with decreasing pH. At the same low pH (4.40), the adsorption by NG-8 was similar to that by XAD-4, indicating little influence of protonated (neutral) surface functional groups. In contrast, the adsorption by NG-8 at pH 6.05 was 75% lower than that by XAD-4, resulting apparently from the strong electrostatic repulsion between RB5 and deprotonated (negative) groups. Amination substantially enhanced RB5 adsorption by eliminating acidic groups and creating a positive charge on the surface of MN-8. The adsorptive enhancement was also achieved in the presence of CaCl2, due presumably to the neutralization of negative surface charge by Ca2+ and the RB5-Ca2+ pairing. These results manifest the important role of surface functionality in the adsorption of dyes by synthetic polymers.
虽然合成聚合物吸附剂通过吸附有效地处理染料废水,但其潜在机制仍有待了解。这项工作确定了三种表面功能差异显著的聚合物对阴离子染料的吸附情况。聚合物的表面官能团在傅里叶变换红外光谱(FTIR)中显示,并通过 Boehm 滴定法进行定量。参照功能度较低的商业吸附剂 XAD-4,实验室合成的 NG-8 主要具有酸性官能团,而其胺化产物 MN-8 主要具有碱性氨基。电泳测定 XAD-4、NG-8 和 MN-8 的零电荷点分别为 4.18、3.23 和 4.51。所有吸附剂单位表面积对活性黑 5 染料(RB5)的吸附量随 pH 值降低而增加。在相同的低 pH 值(4.40)下,NG-8 的吸附量与 XAD-4 相似,表明质子化(中性)表面官能团影响较小。相比之下,NG-8 在 pH 6.05 时的吸附量比 XAD-4 低 75%,这显然是由于 RB5 与去质子化(负)基团之间的强静电排斥作用。胺化通过消除酸性基团并在 MN-8 表面产生正电荷,显著增强了 RB5 的吸附。在氯化钙存在的情况下也实现了吸附增强,这可能是由于 Ca2+ 中和了表面负电荷以及 RB5-Ca2+ 配对。这些结果表明表面功能在合成聚合物对染料吸附中起着重要作用。