Institute of Land Engineering and Technology, Shaanxi Provincial Land Engineering Construction Group Co., Ltd, Xi'an, 710075, China.
The Key Laboratory of Agricultural Resources and Environment in Chongqing, College of Resource and Environment, Southwest University, Chongqing, 400716, China.
Sci Rep. 2020 Nov 12;10(1):19663. doi: 10.1038/s41598-020-76362-1.
Polymer-supported nanozero-valent iron composites (D001-nZVI) were fabricated for the removal of lead ions from aqueous solutions by embedding nZVI into the porous polystyrene anion exchanger D001. Humic acid (HA) was selected as a model species because of its ubiquitous existence to gain insight into the influencing factors in the actual application process. The iron contents of the composites were approximately 11.2%, and the smallest ZVI particle size was ~ 5 nm. The experimental results showed that the effect of HA on the reduction of lead ions by D001-nZVI was a concentration-dependent process. At low HA concentrations, the surface-competitive adsorption of HA and Pb dominated; therefore, the removal efficiency of Pb by D001-nZVI decreased from 97.5 to 90.2% with an increasing HA concentration. When the HA concentration increased to 30 mg/L or more, the lead ions removal remained constant with the following possible cooperation mechanism: the competitive adsorption of HA and Pb on the nZVI surface and the well-dispersed particles were caused by electrostatic interactions between the HA coating and the nZVI surface. In addition, the adsorption complexation between HA and Pb also had a positive effect on the removal of Pb at higher concentrations of HA.
聚合物负载纳米零价铁复合材料(D001-nZVI)通过将 nZVI 嵌入多孔聚苯乙烯阴离子交换剂 D001 中,用于从水溶液中去除铅离子。选择腐殖酸(HA)作为模型物种,因为它的普遍存在,以便深入了解实际应用过程中的影响因素。复合材料的铁含量约为 11.2%,最小的 ZVI 粒径约为 5nm。实验结果表明,HA 对 D001-nZVI 还原铅离子的影响是一个浓度依赖的过程。在低 HA 浓度下,HA 和 Pb 的表面竞争吸附占主导地位;因此,D001-nZVI 对 Pb 的去除效率从 97.5%降低到 90.2%,随着 HA 浓度的增加。当 HA 浓度增加到 30mg/L 或更高时,铅离子的去除保持不变,可能的协同作用机制如下:HA 和 Pb 在 nZVI 表面的竞争吸附和 nZVI 表面之间的静电相互作用导致 HA 涂层和 nZVI 表面的良好分散颗粒。此外,HA 和 Pb 之间的吸附络合在较高浓度的 HA 下对 Pb 的去除也有积极的影响。