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December 6, 2025Water4 citationsOpen Access

Optimization of the Fe0/H2O2/UV Photo-Fenton Process for Real Textile Wastewater via Response Surface Methodology

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BPBastian Paredes

Key Points

  • Complete color removal and 90% aromatic degradation achieved in textile wastewater treatments.
  • Under optimal conditions, the system achieved 80% COD reduction in 3 hours while utilizing specific reagent ratios.
  • Assessment based on Response Surface Methodology validated process performance with high statistical correlation metrics.
  • Findings support the Fe0/H2O2/UV system as a sustainable technology for treating toxic textile contaminants.

Abstract

The textile industry releases effluents containing toxic contaminants such as azo dyes, which severely affect water quality and aquatic ecosystems. This study optimized the Fe0/H2O2/UV photo-Fenton process through Response Surface Methodology (RSM) using a Box–Behnken design applied to real textile wastewater. The process relies on in situ hydroxyl radicals (•OH) generation, which degrades refractory organic compounds. Under optimal conditions (pH 3.5, 0.5 g Fe0, and 0.55 mL H2O2), the system achieved complete color removal, 91% aromatic structures degradation, and an 80% COD reduction within 3 h. Statistical validation indicated an excellent model fit (R2 = 1.0; Q2 = 1.0), with strong correlation between experimental and predicted results. Spectroscopic analyses (UV–Vis and FTIR) further confirmed the cleavage of chromophoric and aromatic structures, indicating efficient pollutant degradation. Overall, the findings indicate that the Fe0/H2O2/UV system is an effective and sustainable technology for treating textile wastewater, offering strong potential for industrial-scale application.

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Cite This Study

Bastian Paredes (2025) studied this question.

synapsesocial.com/papers/69337ce8b3f947a0a125a07fhttps://doi.org/10.3390/w17233427
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