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.

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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

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article

Biosynthesis and response surface optimization of methyl violet 10B adsorption onto Moringa oleifera–mediated silver nanoparticles

Meshayil M. Alsolmi, Noura El‐Ahmady El‐Naggar, R. A. HAMOUDA, Mashael I. Alqurashi
Scientific Reports
Adsorption and biosorption for pollutant removal
article

Biosynthesis and response surface optimization of methyl violet 10B adsorption onto Moringa oleifera–mediated silver nanoparticles

Meshayil M. Alsolmi, Noura El‐Ahmady El‐Naggar, R. A. HAMOUDA, Mashael I. Alqurashi
article en

Abstract

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.

Scientific Reports
University of Sadat City (EG), University of Jeddah (SA), City of Scientific Research and Technological Applications (EG)
University of Jeddah
Openalex Percentile: Top 20%
Adsorption and biosorption for pollutant removal
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