Department of Chemistry, Aligarh Muslim University, Aligarh, 202002, India.
Department of Chemistry, Aligarh Muslim University, Aligarh, 202002, India.
Environ Res. 2024 Feb 15;243:117868. doi: 10.1016/j.envres.2023.117868. Epub 2023 Dec 8.
In the present study, β-cyclodextrin modified magnetic graphene oxide/cellulose (CN/IGO/Cel) was fabricated for removal of Cd(II) ions. The material was characterized through various analytical techniques like FTIR, XRD, TGA/DTA, SEM, TEM, and XPS. The point of zero charge of the material was obtained as 5.38. The controllable factors were optimized by Taguchi design and optimum values were: adsorbent dose-16 mg, equilibrium time-40 min, and initial concentration of Cd(II) ions-40 mg/L. The material shows high adsorption capacity (303.98 mg/g). The good fitting of Langmuir model to adsorption data (R = 0.9918-0.9936) revealed the monolayer coverage on adsorbent surface. Statistical physics model M 2 showed best fitting to adsorption data (R > 0.997), suggesting the binding of Cd(II) ions occurred on two different receptor sites (n). Stereographically n > 1 confirming vertical multi-molecular mechanisms of Cd(II) ions adsorption on CN/IGO/Cel surface. The adsorption energies (E = 23.71-28.95 kJ/mol; E = 22.69-29.38 kJ/mol) concluded the involvement of physical forces for Cd(II) ions adsorption. Kinetic data fitted well to fractal-like pseudo first-order model (R > 0.9952), concluding the adsorption of Cd(II) ions occurred on energetically heterogeneous surface. The kinetic analysis shows that both the film-diffusion and pore-diffusion were responsible for Cd(II) ions uptake. XPS analysis was utilized to explain the adsorption mechanism of Cd(II) ions onto CN/IGO/Cel.
在本研究中,β-环糊精修饰的磁性氧化石墨烯/纤维素(CN/IGO/Cel)被制备用于去除 Cd(II)离子。该材料通过各种分析技术进行了表征,如 FTIR、XRD、TGA/DTA、SEM、TEM 和 XPS。该材料的零电荷点为 5.38。通过田口设计优化了可控因素,最佳值为:吸附剂剂量-16mg、平衡时间-40min、Cd(II)离子初始浓度-40mg/L。该材料表现出高吸附容量(303.98mg/g)。吸附数据良好地符合 Langmuir 模型(R=0.9918-0.9936)表明吸附剂表面单层覆盖。统计物理模型 M2 对吸附数据拟合最好(R>0.997),表明 Cd(II)离子在两个不同的受体位点(n)上发生结合。立体地 n>1 证实了 Cd(II)离子在 CN/IGO/Cel 表面上的垂直多分子吸附机制。吸附能(E=23.71-28.95kJ/mol;E=22.69-29.38kJ/mol)表明 Cd(II)离子的吸附涉及物理力。动力学数据很好地符合分形似的伪一级模型(R>0.9952),表明 Cd(II)离子的吸附发生在能量不均匀的表面上。动力学分析表明,膜扩散和孔扩散都对 Cd(II)离子的摄取负责。XPS 分析用于解释 Cd(II)离子在 CN/IGO/Cel 上的吸附机理。