PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
June 4, 2026Catalysts0 citationsOpen Access

Solar-Assisted Iron Sludge Photo-Fenton Catalysis for Enhanced Oxidation of Dye-Loaded Beauty Salon Wastewater

View Full Paper
HNHossam A. NabweyMTMaha A. Tony

Key Points

  • This study aims to optimize a solar-assisted photo-Fenton process using iron sludge for treating beauty salon wastewater.
  • Evaluated effects of pH, H2O2 concentration, iron sludge dosage, reaction time, and temperature on wastewater treatment.
  • Conducted kinetic analysis and thermodynamic evaluation to assess process efficiency.
  • Used response surface methodology to analyze parameter interactions and predictive accuracy.
  • Achieved approximately 98% dye removal and 95% COD reduction under optimal conditions (pH = 3, H2O2 = 400 mg L−1, iron sludge = 40 mg L−1).
  • Demonstrated second-order reaction kinetics with an endothermic process (Eₐ = 21.8 kJ mol−1).
  • Performance peaked at 40 °C, with efficiency decreasing at higher temperatures due to H2O2 decomposition.

Abstract

Beauty salon wastewater is an emerging commercial greywater characterized by high chemical oxygen demand (COD), intense color, and low biodegradability due to the presence of surfactants and oxidative dye precursors. This study evaluated a solar-assisted photo-Fenton process using waste-derived iron sludge as a heterogeneous catalyst for treating real beauty salon effluent. Operational parameters, including pH, H2O2 concentration, iron sludge dosage, reaction time, and temperature, were optimized based on dye removal and COD reduction. Under optimal conditions (pH = 3, H2O2 = 400 mg L−1, iron sludge = 40 mg L−1), the system achieved approximately 98% dye removal and 95% COD reduction within 50 min of irradiation. Additionally, maximum performance was observed at 40 °C, while higher temperatures reduced efficiency due to non-productive H2O2 decomposition. Kinetic analysis was performed, and the results indicated predominant second-order behavior. Thermodynamic evaluation confirmed an endothermic process with moderate activation energy (Eₐ = 21.8 kJ mol−1). Response surface methodology confirmed strong parameter interactions and high predictive accuracy. The integration of solar irradiation with iron sludge valorization provides a sustainable and decentralized solution for treating dye-loaded beauty salon wastewater.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Nabwey et al. (2026) studied this question.

synapsesocial.com/papers/6a2116acd499ed480b16f92ahttps://doi.org/10.3390/catal16060513
Ask AI
Helpful
Bookmark
Share
View Full Paper