Biodegradable Acid-Based Fe2MnO4 Nanoparticles for Water Remediation

Author:

Ahmad Rabia1,Alzahrani Elham A.2ORCID,Dwivedi Poonam3,Hafeez Sumbul4,Deswal Jyoti1,Fatima Bushra1,Siddiqui Sharf Ilahi3,Oh Seungdae5

Affiliation:

1. Department of Chemistry, Jamia Millia Islamia, New Delhi 110025, India

2. Department of Chemistry, College of Science, University of Ha’il, Ha’il 81451, Saudi Arabia

3. Department of Chemistry, Ramjas College, University of Delhi, Delhi 110007, India

4. Department of Civil and Environmental Engineering, Villanova University, Villanova, PA 19085, USA

5. Department of Civil Engineering, Kyung Hee University, Yongin-si 17104, Gyeonggi-do, Republic of Korea

Abstract

This study demonstrated the synthesis of Fe2MnO4 modified by citric acid, a biodegradable acid, using a simple co-precipitation method. Characterization was performed using qualitative analysis techniques such as Fourier-transformed infrared spectroscopy, scanning electron microscopy equipped with energy-dispersive X-ray spectroscopy, X-ray diffraction, selected-area electron diffraction, N2 adsorption–desorption, and zero-point charge. The prepared nanoparticles had a rough and porous surface, and contained oxygenous (-OH, -COOH, etc.) functional groups. The specific surface area and average pore size distribution were 83 m2/g and 5.17 nm, respectively. Net zero charge on the surface of the prepared nanoparticles was observed at pH 7.5. The prepared nanoparticles were used as an adsorbent to remove methylene blue dye from water under various conditions. Using small amounts of the adsorbent (2.0 g/L), even a high concentration of MB dye (60 mg/L) could be reduced by about ~58%. Exothermic, spontaneous, feasible, and monolayer adsorption was identified based on thermodynamics and isotherm analysis. Reusability testing verified the stability of the adsorbent and found that the reused adsorbent performed well for up to three thermal cycles. Comparative analysis revealed that the modified adsorbent outperformed previously reported adsorbents and unmodified Fe2MnO4 in terms of its partition coefficient and equilibrium adsorption capacity under different experimental conditions.

Funder

National Research Foundation of Korea

Publisher

MDPI AG

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