Adsorption and biosorption for pollutant removalCopper-based nanomaterials and applicationsFluoride Effects and Removal

Mari Papel, Y. Corrugado, A. Vijaya Gopal, R. Lakshmipathy

2026.4.4Mari Papel y Corrugado

DOI: 10.71442/mari2026-0004

Abstract

 This study focuses on the synthesis of pure and Fe-substituted CuAl ₂ O ₄ nanospinels using the co-precipitation method at elevated temperatures. Various analytical techniques, including scanning electron microscopy, transmission electron microscopy, FT-IR spectroscopy, and X-ray diffraction, were employed to confirm the formation of the nanospinels. The efficiency of the prepared nanospinels in adsorbing Pb² ⁺ ions from aqueous solutions was evaluated. A Response Surface Methodology (RSM) based on a Central Composite Design (CCD) was developed to optimize three independent variables: pH, contact time, and initial concentration. A quadratic model was constructed to predict the adsorption behavior, and the model predictions closely matched the experimental values, indicating high reliability. The adsorption isotherm and kinetic studies suggest multilayer adsorption governed by the Langmuir isotherm, with physisorption as the dominant mechanism, although the kinetic data fitted well with the pseudo-second-order kinetic model. The spontaneity of the adsorption process increased with rising temperature and was found to be exothermic in nature. The adsorbents

Citation format

PAPEL, Mari, et al. Synthesis of cual2o4 & fe substituted cual2o4 nanospinels and CCD based response surface methodology investigations for pb2+ ions adsorption. Mari Papel y Corrugado, 2026, 2026: 34.