Department of Chemistry, Faculty of Science, King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Center of Excellence in Environmental Studies (CEES), King Abdulaziz University, Jeddah 21589, Saudi Arabia.
Molecules. 2022 Aug 30;27(17):5592. doi: 10.3390/molecules27175592.
This study reports a facile approach for preparing low-cost, eco-friendly nanocomposites of ZnO nanoparticles (NPs) and date palm tree fiber (DPF) as a biomass sorbent. The hypothesis of this research work is the formation of an outstanding adsorbent based on the date palm fiber and ZnO nanoparticles. ZnO NP/DPF nanocomposites were synthesized by mixing the synthesized ZnO NPs and DPF in different mass ratios and evaluating their efficacy in adsorbing Pb2+ from aqueous solutions. The structure and surface morphology of the developed ZnO NP/DPF nanocomposite were critically characterized by XRD, FESEM, and TEM techniques. Compared to ZnO NPs, the ZnO NP/DPF nanocomposites displayed significantly enhanced Pb2+ uptake. Pb2+ adsorption was confirmed via various isotherm and kinetic models and thermodynamics. The computed Langmuir sorption capacity (qm) was found to be 88.76 mg/g (R2 > 0.998), and the pseudo-second-order R2 > 0.999 model was most appropriate for describing Pb2+ adsorption. Impregnating the biomass with ZnO NPs enhanced the spontaneity of the process, and the value (−56.55 kJ/mol) of ΔH displayed the exothermic characteristics of Pb2+ retention. Only the loaded ZnO NP/DPF achieved the removal of a high percentage (84.92%) of Pb2+ from the environmental water sample (seawater). This finding suggests the use of ZnO NP/DPF nanocomposites for removing heavy metals from environmental water samples to purify the samples.
本研究报告了一种简便的方法,用于制备低成本、环保的 ZnO 纳米粒子(NPs)和枣椰树纤维(DPF)纳米复合材料,作为生物质吸附剂。本研究工作的假设是基于枣椰纤维和 ZnO 纳米粒子形成一种出色的吸附剂。通过将合成的 ZnO NPs 和 DPF 以不同的质量比混合来合成 ZnO NP/DPF 纳米复合材料,并评估其从水溶液中吸附 Pb2+的效果。通过 XRD、FESEM 和 TEM 技术对所开发的 ZnO NP/DPF 纳米复合材料的结构和表面形态进行了严格的表征。与 ZnO NPs 相比,ZnO NP/DPF 纳米复合材料显示出明显增强的 Pb2+吸附能力。通过各种等温线和动力学模型以及热力学证实了 Pb2+的吸附。计算得到的 Langmuir 吸附容量(qm)为 88.76 mg/g(R2>0.998),而伪二阶 R2>0.999 模型最适合描述 Pb2+的吸附。将 ZnO NPs 浸渍到生物质中增强了过程的自发性,而 ΔH 的值(-56.55 kJ/mol)显示出 Pb2+保留的放热特征。只有负载的 ZnO NP/DPF 实现了从环境水样(海水)中去除高达 84.92%的 Pb2+。这一发现表明,使用 ZnO NP/DPF 纳米复合材料可以从环境水样中去除重金属,以净化水样。