Parametric Optimization of Ball-Milled Bimetallic Nanoadsorbents for the Effective Removal of Arsenic Species Academic Article uri icon

abstract

  • Arsenic (As) removal from portable water bodies using the nanotechnology-based adsorption technique offers a unique method to lower the As contamination below the World Health Organizations (WHO) maximum contaminant level (MCL). This work promotes a systematic methodological-based adsorption study by optimizing the different parameters that affect As removal using TiO2/-Fe2O3 nanocomposites (T/M NCs) prepared with the green, facile, and cost-effective ball milling method. The studies using X-ray Diffraction (XRD) illustrate the structural modifications with variations in the constituting T/M ratios, with high-resolution transmission electron microscopy (HRTEM) being used for the NC morphological studies. The optical characterization studies showed that bandgap tuning between 22.8 eV reduced the maghemite (-Fe2O3) content in the NCs and the elemental analysis confirmed the desired stoichiometry of the NCs. The magnetic measurements showed that the magnetic interaction among the particles tends towards exchange coupling behavior as the weight ratio of -Fe2O3 content decreases in the NCs. The adsorption studies using the most efficient NCs with an optimized condition (NC dose (8 g/L), contact time (15 min), As concentration (2 ppm), and pH (4)) resulted in a more than 99% removal of As species, suggesting the excellent behavior of the synthesized nanomaterial for water treatment and making it more economical than other competing adsorption techniques and materials.

published proceedings

  • SOLIDS

altmetric score

  • 2.85

author list (cited authors)

  • Babudurai, M., Sekar, K., Nwakanma, O. M., Manisekaran, R., Garza-Navarro, M. A., Subramaniam, V., Cuando-Espitia, N., & David, H.

citation count

  • 1

complete list of authors

  • Babudurai, Mercyrani||Sekar, Karthick||Nwakanma, Onyekachi Michael||Manisekaran, Ravichandran||Garza-Navarro, Marco A||Subramaniam, Velumani||Cuando-Espitia, Natanael||David, Halaney

publication date

  • 2022

publisher