Guru Jambheshwar University of Science and Technology, Hisar, 125001, India.
Mehr Chand Mahajan DAV College for Women-36, Chandigarh, 160036, India.
Environ Sci Pollut Res Int. 2024 Jun;31(28):40083-40099. doi: 10.1007/s11356-023-28175-8. Epub 2023 Jun 19.
In this study, bare and ionic liquid-modified ZnO nanoparticles have been fabricated using microwave irradiation method. The fabricated nanoparticles were characterized by different techniques, viz. XRD, FT-IR, FESEM, and UV-Visible spectroscopy, and were explored as adsorbent for effective sequestration of azo dye (Brilliant Blue R-250) from aqueous media. Various factors affecting the adsorption efficiency of synthesized nanoparticles (bare/ionic liquid-modified) such as concentration of dye, pH of reaction media, dose of nanoparticles, and reaction time were thoroughly investigated with varying experimental conditions; on a magnetic stirrer and in a sonicator. The results exhibited a high adsorption efficiency of ionic liquid-modified nanoparticles for removal of dye as compared to the bare one. Also, an enhanced adsorption was observed via sonication in comparison with magnetic stirring. Different isotherms such as Langmuir, Freundlich, and Tempkin were elaborated. Evaluation of adsorption kinetics showed a linear pseudo-second-order equation for adsorption process. The exothermic and spontaneous nature of adsorption was further confirmed by thermodynamic investigations. As per the results obtained, it is suggested that the fabricated ionic liquid-modified ZnO nanoparticles could successfully remediate the toxic anionic dye from aqueous media. Hence, this system can be utilized for large-scale industrial applications.
在这项研究中,使用微波辐射法制备了裸露和离子液体修饰的氧化锌纳米粒子。所制备的纳米粒子通过不同的技术进行了表征,即 XRD、FT-IR、FESEM 和 UV-可见光谱,并被探索作为吸附剂,以有效从水介质中螯合偶氮染料(亮蓝 R-250)。在不同的实验条件下,如染料浓度、反应介质的 pH 值、纳米粒子的用量和反应时间等,详细研究了影响合成纳米粒子(裸露/离子液体修饰)吸附效率的各种因素,在磁力搅拌器和超声仪中进行。结果表明,与裸露的纳米粒子相比,离子液体修饰的纳米粒子对染料的去除具有更高的吸附效率。此外,与磁力搅拌相比,通过超声观察到吸附增强。详细阐述了不同的等温线,如朗缪尔、弗伦德利希和坦普金。吸附动力学的评估表明,吸附过程符合线性拟二级方程。通过热力学研究进一步证实了吸附的放热和自发性质。根据所得结果,建议成功地从水介质中修复了有毒的阴离子染料的离子液体修饰的氧化锌纳米粒子。因此,该系统可用于大规模的工业应用。