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Chromium Ferrite Supported on Activated Carbon from Olive Mill Solid Waste for the Photo-Fenton Degradation of Pollutants from Wastewater Using LED Irradiation

  • Malak Hamieh*
  • , Sireen Al Khawand
  • , Nabil Tabaja
  • , Khaled Chawraba
  • , Mohammad Hammoud
  • , Sami Tlais
  • , Tayssir Hamieh*
  • , Joumana Toufaily
  • *Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

In this study, chromium ferrite (FeCr; CrFe2O4) nanoparticles supported on activated carbon (AC), obtained from agricultural olive mill solid waste, were synthesized via a simple hydrothermal process. The structural, morphological, optical, and chemical properties of the FeCr/AC composite were characterized using XRD, SEM, EDX, DRS, BET, and FTIR techniques. The FeCr/AC composite was applied as a heterogeneous photo-Fenton catalyst for the degradation of methylene blue (MB) dye in an aqueous solution under 25 W visible-light LED irradiation. Critical operational factors, such as FeCr/AC dosage, pH, MB concentration, and H2O2 levels, were optimized. Under optimal conditions, 97.56% of MB was removed within 120 min of visible-light exposure, following pseudo-first-order kinetics. The composite also exhibited high efficiency in degrading methyl orange dye (95%) and tetracycline antibiotic (88%) within 180 min, with corresponding first-order rate constants of 0.0225 min-1 and 0.0115 min-1, respectively. This study highlights the potential of FeCr/AC for treating water contaminated with dyes and pharmaceuticals, in line with the Sustainable Development Goals (SDGs) for water purification.
Original languageEnglish
Article number15
Number of pages20
JournalAppliedChem
Volume5
Issue number3
DOIs
Publication statusPublished - 11 Jul 2025

Keywords

  • photocatalysis
  • water treatment
  • metal ferrites
  • activated carbon
  • methylene blue
  • tetracycline hydrochloride
  • methyl orange
  • METHYLENE-BLUE
  • PHOTOCATALYTIC DEGRADATION
  • CATALYST
  • DYES
  • NANOCOMPOSITE
  • OXIDE
  • DECOLORIZATION
  • NANOPARTICLES
  • ADSORPTION
  • REMOVAL

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