ISSN 2995-9246
International Journal of Chemistry | Vol. 12, No. 3, March 2021 | pp. 17–24
DOI: 10.46882/2021/IJC/000147
Article Type: Original Research Paper
Title: Thermodynamic Modeling, Kinetic Runs, and Multilayer Adsorption of Acid Blue 92 Dye onto Modified Bentonite Clay
Names of Authors: A. D. Yusuf¹, M. A. Al-Ghamdi²*
Authors’ Affiliations:
¹Department of Industrial Chemistry, Federal University of Technology, Yola, Nigeria.
²Department of Chemistry, Qatar University, Doha, Qatar.
Abstract: The release of highly stable anionic azo dyes like Acid Blue 92 from textile processing factories causes significant environmental and toxicity hazards in surface water channels. This study examines the adsorptive uptake performance of a surfactant-modified bentonite clay (SMB) prepared via chemical functionalization with hexadecyltrimethylammonium bromide (HDTMA-Br). The structural parameters of raw and modified clays were characterized using X-ray diffraction (XRD) and FT-IR spectroscopy. Adsorption operations were conducted via batch runs, monitoring changes in contact time, solution pH, initial dye loading concentrations, and system temperatures. The equilibrium datasets fit closely with the Freundlich isotherm model, demonstrating successful multilayer dye attachment onto the hydrophobic surfactant bilayers. Kinetic parameters matched the intra-particle diffusion expressions alongside a pseudo-second-order mechanism, showing that chemisorption reactions controlled the mass transfer rates. Thermodynamic constants showed that the adsorption process was endothermic (delta H° = 22.4 kJ/mol) and caused an increase in system randomness at the solid-solution interface (delta S° = 74.2 J/mol K). Negative values of Gibbs free energy (delta G°) spanning from -2.4 to -5.8 kJ/mol across the 298 to 328 K range confirmed process spontaneity, positioning SMB as an affordable material for industrial dye wastewater treatment.
Keywords: Bentonite clay; Surfactant modification; Acid blue 92; Adsorption isotherm; Chemisorption; Thermodynamic parameters
Manuscript Timeline: Received: July 20, 2020; Revised: August 28, 2020; Accepted: September 15, 2020; Published: March 04, 2021.
Citation: Yusuf, A. D., & Al-Ghamdi, M. A. (2021). Thermodynamic Modeling, Kinetic Runs, and Multilayer Adsorption of Acid Blue 92 Dye onto Modified Bentonite Clay. International Journal of Chemistry, 12(3), 17–24.
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