Synthesis of Fe3O4 Nanoparticles Using Lichen (Collema ABU01502) Extract and their Application in the Removal of 4-Nitrophenol from Aqueous Solution
Keywords:
Keywords: Adsorption analysis, iron oxide nanoparticles, lichen extract, P-nitrophenol,Abstract
In this study, magnetite (Fe₃O₄) nanoparticles were successfully synthesized via a green and sustainable route using Collema lichen (ABU01502) extract as a natural reducing and capping agent, and their application in the removal of 4-nitrophenol (4-NP) from aqueous solution was systematically investigated. Fourier Transform Infrared (FTIR) spectroscopy confirmed the presence of bio-derived functional groups (–OH, C=O, C–O, and aromatic moieties) on the nanoparticle surface alongside the characteristic Fe–O vibration around 580 cm⁻¹, indicating successful formation of magnetite with biomolecular capping. SEM and TEM analyses showed that the nanoparticles were almost spherical and had some agglomeration. The sizes of the particles ranged from 10.0 to 28.5 nm. UV–Vis spectroscopy showed a broad absorbance between 300 and 800 nm, consistent with the optical behavior of Fe₃O₄ nanoparticles. Batch adsorption experiments demonstrated that 4-NP removal efficiency strongly depended on pH, temperature, contact time, and adsorbent dosage, with removal efficiencies ranging from approximately 4 % to 55 % prior to optimization. Response Surface Methodology (RSM) based on a 2⁴ factorial design yielded a highly significant predictive model (F = 37.10, p = 0.0063) with a high coefficient of determination (R² = 0.9933). Optimal conditions (pH 8.0, 60 °C, 180 min, and 4 g L⁻¹ adsorbent dosage) resulted in a maximum 4-NP removal of 74.93 % and a desirability of 1.0. Adsorption equilibrium was best described by the Langmuir isotherm (R² = 0.9942), with a monolayer adsorption capacity of 49.75 mg g⁻¹ and a favorable separation factor (Rᴸ = 0.095). These findings demonstrate that lichen-mediated Fe₃O₄ nanoparticles are efficient, magnetically recoverable, and environmentally benign adsorbents for nitrophenol-contaminated water treatment.
Downloads
Published
Issue
Section
Similar Articles
- Richard Alexis Ukpe, Joint Effect of Ethanol Extract of Orange Peel and halides on the Inhibition of the Corrosion of Aluminum in 0.1 M HCl: An approach to Resource Recovery , Communication In Physical Sciences: Vol. 4 No. 1 (2019): VOLUME 4 ISSUE 1
- Attah Chuks Emmanuel, Removal of Cadmium Ion from Aqueous Solution by oyster-based Based Calcium Oxide Nanoparticles , Communication In Physical Sciences: Vol. 10 No. 3: VOLUME 10 ISSUE 3 (2023-2024)
- Babatunde Ogunyemi, ogunyemi Oderinlo, Taye Alawode, Green Synthesis and Characterization of Silver Nanoparticles from Tympanotonus fuscatus and Crassostrea gasar Shells , Communication In Physical Sciences: Vol. 11 No. 4 (2024): VOLUME 11 ISSUE 4
- Attah Chuks Emmanuel, Gloria Chika Udeokpote, Ethanol Extract of Vernonia amygdalina Leaf as a Green Corrosion Inhibitor for Carbon Steel in Solution of HCl , Communication In Physical Sciences: Vol. 10 No. 3: VOLUME 10 ISSUE 3 (2023-2024)
- Fabian James Umoren, Mfon Clement Utin, Resource Recovery from Maize Wastes; Synthesis and Characterization of Silicon Oxide Nanoparticles , Communication In Physical Sciences: Vol. 11 No. 3 (2024): VOLUME 11 ISSUE 3
- Yunusa Habibat, Omoniyi K. Isreal, Stephen Abechi, Aroh A. Oyibo, Owolabi A. Awwal, Imam Naziru, Green Synthesis of Titanium Oxide (TiO2) Nanoparticles Using Phyllanthus Niruri and Assessment of Its Antibacterial Activity in Wastewater Treatment , Communication In Physical Sciences: Vol. 10 No. 1 (2023): VOLUME 10 ISSUE 1
- Vivian Ifeoma Okonkwo, Gloria Chika Udeokpote, Uduak Bassey Essien, Ethanol Extract of Curcuma longa as a green corrosion inhibitor for carbon steel in solution of HCl , Communication In Physical Sciences: Vol. 8 No. 4 (2022): VOLUME 8 ISSUE 4
- Anduang Ofuo Odiongenyi, Adsorption Efficiency of Scotch Bonnet Shells as a Precursor for Calcium Oxide Nanoparticles and an Adsorbent for the Removal of Amoxicillin from Aqueous Solution , Communication In Physical Sciences: Vol. 9 No. 3 (2023): VOLUME 9 ISSUE 3
- Kantoma, D.,, Green Synthesis of Silver nanoparticlesNanoparticles(AgNPs) using Calotropis procera leaves Leaves extract Extract and it adsorption Adsorption properties Properties for the removal Removal Chromium(III) ion. of Cr3+ from Petroleum Waste Water , Communication In Physical Sciences: Vol. 11 No. 1 (2024): VOLUME 11 ISSUE 1
- Richard Alexis Ukpe, The Investigation of the Corrosion Inhibition Efficiency of Aqueous extract of Vernomia Amygdalina for Mild Steel In Various Concentrations of HCl , Communication In Physical Sciences: Vol. 10 No. 1 (2023): VOLUME 10 ISSUE 1
You may also start an advanced similarity search for this article.



