Parimelazhagan, Vairavel and Chinta, Akhil and Shetty, Gaurav Ganesh and Maddasani, Srinivasulu and Tseng, Wei-Lung and Ethiraj, Jayashree and Sundaram, Ganeshraja Ayyakannu and Kumar, Alagarsamy Santhana Krishna (2024) Process Optimization and Equilibrium, Thermodynamic, and Kinetic Modeling of Toxic Congo Red Dye Adsorption from Aqueous Solutions Using a Copper Ferrite Nanocomposite Adsorbent. MOLECULES, 29.0 (2).
Full text not available from this repository.Abstract
In the present investigation of copper ferrite, a CuFe2O4 nanocomposite adsorbent was synthesized using the sol-gel method, and its relevance in the adsorptive elimination of the toxic Congo red (CR) aqueous phase was examined. A variety of structural methods were used to analyze the CuFe2O4 nanocomposite; the as-synthesized nanocomposite had agglomerated clusters with a porous, irregular, rough surface that could be seen using FE-SEM, and it also contained carbon (23.47%), oxygen (44.31%), copper (10.21%), and iron (22.01%) in its elemental composition by weight. Experiments were designed to achieve the most optimized system through the utilization of a central composite design (CCD). The highest uptake of CR dye at equilibrium occurred when the initial pH value was 5.5, the adsorbate concentration was 125 mg/L, and the adsorbent dosage was 3.5 g/L. Kinetic studies were conducted, and they showed that the adsorption process followed a pseudo-second-order (PSO) model (regression coefficient, R2 = 0.9998), suggesting a chemisorption mechanism, and the overall reaction rate was governed by both the film and pore diffusion of adsorbate molecules. The process through which dye molecules were taken up onto the particle surface revealed interactions involving electrostatic forces, hydrogen bonding, and pore filling. According to isotherm studies, the equilibrium data exhibited strong agreement with the Langmuir model (R2 = 0.9989), demonstrating a maximum monolayer adsorption capacity (qmax) of 64.72 mg/g at pH 6 and 302 K. Considering the obtained negative Delta G and positive Delta Hads and Delta Sads values across all tested temperatures in the thermodynamic investigations, it was confirmed that the adsorption process was characterized as endothermic, spontaneous, and feasible, with an increased level of randomness. The CuFe2O4 adsorbent developed in this study is anticipated to find extensive application in effluent treatment, owing to its excellent reusability and remarkable capability to effectively remove CR in comparison to other adsorbents.
| Item Type: | Article |
|---|---|
| Uncontrolled Keywords: | Congo red dye adsorption, copper ferrite nanocomposite, sol-gel synthesis, response surface methodology, adsorption kinetics, equilibrium isotherms, thermodynamics, reusability |
| Subjects: | Chemistry > Biochemistry & Molecular Biology Chemistry > Chemistry Multi-Disciplinary Studies > Multidisciplinary |
| Divisions: | Engineering and Technology > Aarupadai Veedu Institute of Technology, Chennai, India > Electrical and Electronic Engineering |
| Depositing User: | Unnamed user with email techsupport@mosys.org |
| Last Modified: | 06 Feb 2026 07:15 |
| URI: | https://ir.vmrfdu.edu.in/id/eprint/7364 |
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