State Key Laboratory of Pollution Control and Resources Reuse, School of the Environment, Nanjing University, Nanjing 210046, PR China.
Water Res. 2012 Sep 15;46(14):4417-26. doi: 10.1016/j.watres.2012.05.052. Epub 2012 Jun 7.
In this paper, a novel quaternized magnetic resin, NDMP, was prepared and characterized. Two reactive dyes (RDs), Orange G (OG) and red RWO, were used as a small-molecular RD and large-molecular RD, respectively, to investigate their adsorption on NDMP. A common quaternized magnetic resin, MIEX, was selected for comparison. The adsorption kinetics of OG onto both resins and the adsorption kinetics of RWO onto NDMP followed pseudo-second-order kinetics, whereas the adsorption of RWO onto MIEX was better fitted by pseudo-first-order kinetics. The experimental data illustrated that the equilibrium adsorption amount of both RDs onto NDMP (1.9 mmol OG/g, 0.70 mmol RWO/g) was twice as large as that on MIEX (1.0 mmol OG/g, 0.35 mmol RWO/g). The Langmuir equation and the Freundlich model fit the isotherm data for OG and RWO adsorption, respectively. The adsorption of OG on the NDMP and MIEX resins declined in the presence of NaCl or Na₂SO₄. The effects of the salts on the adsorption of RWO were different. The recyclability of NDMP and MIEX were also evaluated. This work provides a reusable efficient adsorbent for the removal of RDs.
本文制备并表征了一种新型季铵化磁性树脂 NDMP。选用两种反应性染料(RDs),即橙色 G(OG)和红色 RWO,分别作为小分子 RD 和大分子 RD,研究其在 NDMP 上的吸附。选择常见的季铵化磁性树脂 MIEX 进行比较。OG 在两种树脂上的吸附动力学和 RWO 在 NDMP 上的吸附动力学均遵循拟二级动力学,而 RWO 在 MIEX 上的吸附更符合拟一级动力学。实验数据表明,两种 RD 在 NDMP 上的平衡吸附量(1.9 mmol OG/g,0.70 mmol RWO/g)是在 MIEX 上的两倍(1.0 mmol OG/g,0.35 mmol RWO/g)。OG 和 RWO 吸附的等温线数据分别符合 Langmuir 方程和 Freundlich 模型。OG 在 NDMP 和 MIEX 树脂上的吸附在存在 NaCl 或 Na₂SO₄ 时会下降。盐对 RWO 吸附的影响不同。还评估了 NDMP 和 MIEX 的可回收性。这项工作为去除 RD 提供了一种可重复使用的高效吸附剂。