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Synthesis, characterization and application of novel MnO and CuO impregnated biochar composites to sequester arsenic (As) from water: Modeling, thermodynamics and reusability
Journal of Hazardous Materials
  • Muhammad Imran, COMSATS University Islamabad
  • Muhammad Mohsin Iqbal, COMSATS University Islamabad
  • Jibran Iqbal, Zayed University
  • Noor Samad Shah, COMSATS University Islamabad
  • Zia Ul Haq Khan, COMSATS University Islamabad
  • Behzad Murtaza, COMSATS University Islamabad
  • Muhammad Amjad, COMSATS University Islamabad
  • Shafaqat Ali, Government College University Faisalabad
  • Muhammad Rizwan, Government College University Faisalabad
Document Type
Article
Publication Date
1-5-2021
Abstract

© 2020 Elsevier B.V. The present study aimed at enhancing the adsorption potential of novel nanocomposites of Sesbania bispinosa biochar (SBC) with copper oxide (SBC/CuO) and manganese oxide nanoparticles (SBC/MnO) for the efficient and inexpensive removal of environmentally concerned contaminant arsenic (As) from contaminated water at batch scale. The scanning electron microscopy (SEM), Fourier transform infrared (FTIR) spectroscopy, energy dispersive X-ray (EDX), X-ray diffraction (XRD) and point of zero charge (PZC) analyses proved successful impregnation of the metallic nanoparticles on SBC surface. The results revealed the maximum As removal (96 %) and adsorption (12.47 mg/g) by SBC/CuO composite at 10 mg As/L, optimum pH-4, dose 1.0 g/L and ambient temperature (25 ± 1.5 °C) as compared with SBC (7.33 mg/g) and SBC/MnO (7.34 mg/g). Among four types of adsorption isotherms, Freundlich isotherm demonstrated best fit with R2 > 0.997. While pseudo second-order kinetic model revealed better agreement with kinetic experimental data as matched with other kinetic models. The thermodynamic results depicted that As adsorption on the as-synthesized adsorbents was endothermic and spontaneous in nature with increased randomness. The SBC/CuO displayed excellent reusability and stability over four adsorption/desorption cycles and proved that the as-synthesized SBC/CuO composite may be the efficient adsorbent for practical removal of As from contaminated water.

Publisher
Elsevier B.V.
Disciplines
Keywords
  • Adsorption,
  • Biochar,
  • Mechanism,
  • Nanocomposite,
  • SBC/CuO,
  • Thermodynamics
Scopus ID
85087289804
Indexed in Scopus
Yes
Open Access
No
https://doi.org/10.1016/j.jhazmat.2020.123338
Citation Information
Muhammad Imran, Muhammad Mohsin Iqbal, Jibran Iqbal, Noor Samad Shah, et al.. "Synthesis, characterization and application of novel MnO and CuO impregnated biochar composites to sequester arsenic (As) from water: Modeling, thermodynamics and reusability" Journal of Hazardous Materials Vol. 401 (2021) p. 123338 ISSN: <a href="https://v2.sherpa.ac.uk/id/publication/issn/0304-3894" target="_blank">0304-3894</a>
Available at: http://works.bepress.com/jibran-iqbal/28/