Adsorption and electrochemical regeneration of 2D magnetic MXene nanosheets loaded with tetracycline
Document Type
Article
Department
Faculty of Arts and Sciences
Abstract
A delaminated Ti3C2Tx MXene nanosheet–Fe3O4 nanoparticle composite (DLMX-Mag) was synthesized using a facile batch fabrication method and applied to an adsorption and electrochemical regeneration process for the removal of tetracycline (TC) from aqueous solutions. The addition of magnetite to the delaminated Ti3C2Tx MXene nanosheets produced a composite with magnetic properties, a larger surface area, and more functional groups attached to its surface. These characteristics are beneficial for magnetic solid–liquid separation and act to increase the adsorption capacity of the material. The experimental data of TC adsorption on DLMX-Mag were best described by the Elovich kinetic model, and the Freundlich isotherm model. Physical and chemical characterization revealed that the adsorption occurred via a surface complexation mechanism. Optimization of the electrochemical parameters resulted in 100% regeneration being achieved for DLMX-Mag. After the fifth cycle of electrochemical treatment, the physicochemical analysis results indicated that the crystallinity of the materials was slightly reduced; however, the addition of new functional groups had the effect of ensuring that the adsorptive capacity was retained. These findings demonstrate that the synthesized magnetic nano-adsorbents should be useful for industrial wastewater treatment.
Publication (Name of Journal)
Chemical Engineering Journal
DOI
https://doi.org/10.1016/j.cej.2023.143473
Recommended Citation
Ghani, A. A.,
Kim, B.,
Nawaz, M.,
Devarayapalli, K. C.,
Lim, Y.,
Kim, G.,
Lee, D. S.
(2023). Adsorption and electrochemical regeneration of 2D magnetic MXene nanosheets loaded with tetracycline. Chemical Engineering Journal, 467.
Available at:
https://ecommons.aku.edu/pakistan_fas_fas/49
Comments
Issue and pagination are not provided by the author/publisher. This work was published before the author joined Aga Khan University.