Facultad de Ingeniería, Universidad Nacional de Cuyo, Consejo Nacional de Investigaciones Científicas y Técnicas, UNCUYO-CONICET, Mendoza, Argentina.
Center for the Development of Nanoscience and Nanotechnology, CEDENNA, Santiago, Chile.
Environ Sci Pollut Res Int. 2022 Mar;29(14):20221-20233. doi: 10.1007/s11356-021-17242-7. Epub 2021 Nov 2.
A novel hybrid nanomaterial, nanoscale zero-valent iron (nZVI)-grafted imogolite nanotubes (Imo), was synthesized via a fast and straightforward chemical procedure. The as-obtained nanomaterial (Imo-nZVI) was characterized using transmission electron microscopy (TEM), electrophoretic mobility (EM), and vibrating sample magnetometry (VSM). The prepared Imo-nZVI was superparamagnetic at room temperature and could be easily separated by an external magnetic field. Sorption batch experiments were performed for single- and multicomponent systems and demonstrated that Hg and Pb could be quantitatively adsorbed at pH 3.0. For multicomponent systems, maximum adsorption capacities of 61.6 mg·g and 76.9 mg·g were obtained for Hg and Pb respectively. It was observed that the functional groups in Imo-nZVI interact preferentially with analytes according to the Misono softness parameter. The higher performance of Imo-nZVI compared with Imo and nZVI is related to the increased number of adsorption sites in the functionalized nanomaterial. The sorption equilibrium data obeyed the Langmuir model, while kinetic studies demonstrated that the sorption processes of Hg and Pb followed the pseudo-second-order model. This study suggests that the Imo-nZVI composite can be used as a promising sorbent to provide a simple and fast separation method to remove Hg and Pb ions from contaminated water.
一种新型的杂化纳米材料,纳米零价铁(nZVI)接枝埃洛石纳米管(Imo),通过快速简便的化学方法合成。所得到的纳米材料(Imo-nZVI)使用透射电子显微镜(TEM)、电泳迁移率(EM)和振动样品磁强计(VSM)进行了表征。制备的 Imo-nZVI 在室温下具有超顺磁性,可以通过外部磁场轻松分离。进行了单组分和多组分体系的吸附批量实验,结果表明 Hg 和 Pb 可以在 pH 3.0 下定量吸附。对于多组分体系,Hg 和 Pb 的最大吸附容量分别为 61.6 mg·g 和 76.9 mg·g。观察到 Imo-nZVI 中的官能团根据 Misono 软度参数优先与分析物相互作用。与 Imo 和 nZVI 相比,Imo-nZVI 的更高性能与官能化纳米材料中增加的吸附位点数量有关。吸附平衡数据符合 Langmuir 模型,而动力学研究表明 Hg 和 Pb 的吸附过程遵循准二级模型。本研究表明,Imo-nZVI 复合材料可用作有前途的吸附剂,为从受污染的水中去除 Hg 和 Pb 离子提供一种简单快速的分离方法。