Materials (Dec 2021)

Synthesis and Characterization of Manganese-Modified Black TiO<sub>2</sub> Nanoparticles and Their Performance Evaluation for the Photodegradation of Phenolic Compounds from Wastewater

  • Muhammad Irfan,
  • Rab Nawaz,
  • Javed Akbar Khan,
  • Habib Ullah,
  • Tahir Haneef,
  • Stanislaw Legutko,
  • Saifur Rahman,
  • Jerzy Józwik,
  • Mabkhoot A. Alsaiari,
  • Mohammad Kamal Asif Khan,
  • Salim Nasar Faraj Mursal,
  • Fahad Salem AlKahtani,
  • Omar Alshorman,
  • Abdulnour Ali Jazem Ghanim

DOI
https://doi.org/10.3390/ma14237422
Journal volume & issue
Vol. 14, no. 23
p. 7422

Abstract

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The release of phenolic-contaminated treated palm oil mill effluent (TPOME) poses a severe threat to human and environmental health. In this work, manganese-modified black TiO2 (Mn-B-TiO2) was produced for the photodegradation of high concentrations of total phenolic compounds from TPOME. A modified glycerol-assisted technique was used to synthesize visible-light-sensitive black TiO2 nanoparticles (NPs), which were then calcined at 300 °C for 60 min for conversion to anatase crystalline phase. The black TiO2 was further modified with manganese by utilizing a wet impregnation technique. Visible light absorption, charge carrier separation, and electron–hole pair recombination suppression were all improved when the band structure of TiO2 was tuned by producing Ti3+ defect states. As a result of the enhanced optical and electrical characteristics of black TiO2 NPs, phenolic compounds were removed from TPOME at a rate of 48.17%, which is 2.6 times higher than P25 (18%). When Mn was added to black TiO2 NPs, the Ti ion in the TiO2 lattice was replaced by Mn, causing a large redshift of the optical absorption edges and enhanced photodegradation of phenolic compounds from TPOME. The photodegradation efficiency of phenolic compounds by Mn-B-TiO2 improved to 60.12% from 48.17% at 0.3 wt% Mn doping concentration. The removal efficiency of phenolic compounds from TPOME diminished when Mn doping exceeded the optimum threshold (0.3 wt%). According to the findings, Mn-modified black TiO2 NPs are the most effective, as they combine the advantages of both black TiO2 and Mn doping.

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