Original Research
Indigo carmine pigment adsorption utilizing MgO nanostructures fabricated from pimpinella anisum extract
N. Y. Elamin
a

aChemistry Department, College of Science, Imam Mohammad Ibn Saud Islamic University (IMSIU), Riyadh 11623, Kingdom of Saudi Arabia

bDepartment of Chemistry, Sudan University of Science and Technology, P.O. Box 407, Khartoum 11111, Sudan


Journal of Optoelectronic and Biomedical Materials 2022, 14(3),115-127; https://doi.org/10.15251/JOBM.2022.143.115
Submitted:Mar 01, 2022
Accepted:Jul 22, 2022
Published:Jul 01, 2022
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Cite This Article
N. Y. Elamin . (2022). Journal of Optoelectronic and Biomedical Materials. Indigo carmine pigment adsorption utilizing MgO nanostructures fabricated from <em>pimpinella anisum</em> extract, 14(3), ,115-127. https://doi.org/10.15251/JOBM.2022.143.115
Abstract

The effectiveness of MgO nanostructures for removing indigo carmine (IC) dye from an aqueous solution is demonstrated in this article. The nanomaterials were synthesized using MgCl2.2H2O and NaOH in a medium containing Pimpinella anisum extract. The microstructure of the samples was investigated using XRD, SEM, EDX, BET, and FTIR.

Additionally, the IC dye uptake and adsorption processes were investigated using a MgO sorbent. To synthesize the MgO1 and MgO2 materials, the adsorption kinetics of IC dye, the starting pH of IC dye solution, and contact time were optimized. The maximal theoretical adsorption efficiency of the MgO1 and MgO2 adsorbents for IC dye was 559.2 and 492.6 mg/g, respectively, according to the Langmuir isotherm adsorption model.

Further, recycling the MgO1 adsorbent proved conceivable due to its ease of collection and re-use following five adsorption-regeneration cycles.

©2026 by the authors. Submitted for possible open access publication under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
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