Laboratory of Materials and Environment, Faculty of Sciences, Ibn Zohr University, Agadir, Morocco.
Laboratory of Materials and Environment, Faculty of Sciences, Ibn Zohr University, Agadir, Morocco.
J Colloid Interface Sci. 2021 Mar;585:560-573. doi: 10.1016/j.jcis.2020.10.036. Epub 2020 Oct 20.
The present study describes the preparation of a novel 1,2,4,5-benzene tetracarboxylic acid doped polyaniline@zinc phosphate (BTCA-PANI@ZnP) nanocomposite via a facile two-step procedure. Thereafter, the as-prepared composite material adsorption characteristics for Cr(VI) ions removal were evaluated under batch adsorption. Kinetic approach studies for Cr(VI) removal, clearly demonstrated that the results of the adsorption process followed the pseudo second order and Langmuir models. The thermodynamic study indicated a spontaneous and endothermic process. Furthermore, higher monolayer adsorption was determined to be 933.88 mg g. In addition, the capability study regarding Cr(VI) ions adsorption over BTCA-PANI@ZnP nanocomposite clearly revealed that our method is suitable for large scale application. X-ray photoelectron spectroscopy (XPS) analysis confirmed Cr(VI) adsorption on the BTCA-PANI@ZnP surface, followed by its subsequent reduction to Cr(III). Thus, the occurrence of external mass transfer, electrostatic attraction and reduction phenomenon were considered as main mechanistic pathways of Cr(VI) ions removal. The superior adsorption performance of the material, the multi-dimensional characteristics of the surface and the involvement of multiple removal mechanisms clearly demonstrated the potential applicability of the BTCA-PANI@ZnP material as an effective alternative for the removal of Cr(VI) ions from wastewater.
本研究通过简便的两步法制备了一种新型的 1,2,4,5-苯四羧酸掺杂聚苯胺@磷酸锌(BTCA-PANI@ZnP)纳米复合材料。此后,通过批量吸附实验评估了所制备的复合材料对 Cr(VI)离子去除的吸附特性。Cr(VI)去除的动力学研究表明,吸附过程的结果遵循拟二级和朗缪尔模型。热力学研究表明该过程是自发的和吸热的。此外,确定的单层吸附量为 933.88mg/g。此外,关于 BTCA-PANI@ZnP 纳米复合材料对 Cr(VI)离子吸附的能力研究清楚地表明,我们的方法适用于大规模应用。X 射线光电子能谱(XPS)分析证实了 Cr(VI)在 BTCA-PANI@ZnP 表面的吸附,随后被还原为 Cr(III)。因此,外部传质、静电吸引和还原现象的发生被认为是 Cr(VI)离子去除的主要机理途径。该材料具有优越的吸附性能、多维表面特征以及涉及多种去除机制,这些都清楚地表明了 BTCA-PANI@ZnP 材料作为从废水中去除 Cr(VI)离子的有效替代品的潜在适用性。