Biosynthesis and response surface optimization of methyl violet 10B adsorption onto Moringa oleifera–mediated silver nanoparticles
The increasing global demand for sustainable wastewater treatment has intensified interest in developing cost-effective and environmentally benign nanomaterials. In this study, biogenic silver nanoparticles (MO/AgNPs) were synthesized using Moringa oleifera leaf extract as a natural reducing and stabilizing agent and first applied as a bioadsorbent for Methyl violet 10B removal from aqueous solutions. The MO/AgNPs were characterized before and after adsorption. Zeta potential shifted from − 24.5 mV to less negative after adsorption, indicating interactions between dye molecules and nanoparticles. X-ray diffraction confirmed their crystalline structure, while transmission electron microscopy revealed uniformly distributed spherical nanoparticles with diameters of 9.03–12.54 nm. A central composite design (CCD) was applied to evaluate and optimize the combined effects of solution pH, contact time, MO/AgNPs concentration, and initial dye concentration on dye removal efficiency. The experimental CCD runs showed removal efficiencies ranging from 41.29% to 90.73%, with the highest observed removal of 90.73% obtained at pH 11, contact time 90 min, MO/AgNPs concentration 1 mg/mL, and initial dye concentration 75 ppm. Desirability-based optimization then predicted a maximum Methyl violet 10B removal efficiency of 95.72% at pH 8.07, contact time 68.11 min, MO/AgNPs concentration 1.25 mg/mL, and initial dye concentration 67.98 ppm. Experimental validation under these conditions yielded a removal efficiency of 96.13%, closely agreeing with the predicted value and confirming the accuracy and reliability of the developed model. These findings demonstrate the novel application and considerable potential of M. oleifera -mediated silver nanoparticles as an efficient, eco-friendly, and sustainable adsorbent for treating dye-contaminated wastewater.
Authors
- Meshayil M. Alsolmi (ORCID: https://orcid.org/0000-0001-5972-8088)
- Noura El‐Ahmady El‐Naggar (ORCID: https://orcid.org/0000-0001-8493-9194)
- R. A. HAMOUDA
- Mashael I. Alqurashi
Institutions
- University of Sadat City (EG)
- University of Jeddah (SA)
- City of Scientific Research and Technological Applications (EG)
Publication Details
- Journal
- Scientific Reports
- Published
- 2026-09-08
- DOI
- https://doi.org/10.1038/s41598-026-68430-9
- Primary Topic
- Adsorption and biosorption for pollutant removal
- Type
- article
- Field-Weighted Citation Impact
- 0.00
Funders
- University of Jeddah