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June 24, 2024Journal of environmental chemical engineeringOpen Access

Application of novel Zn-MIL53(Fe) for removal of micropollutants using an activated peroxymonosulphate system

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Authors

DTDaniel TerrónJHJ.P. Holgado-VázquezAGA. Giráldez

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Overview

Experimental evaluation demonstrates efficient micropollutant degradation in aqueous solutions, highlighting the dual adsorbent and catalytic capacity of a zinc-doped framework.

Key Points

  • Degradation of persistent micropollutants reached high efficiency using zinc-doped frameworks, outperforming single-metal catalysts through enhanced physical interactions at natural pH.
  • Over 99% of fluoxetine and 93% of rhodamine b degraded under optimized conditions, demonstrating potent catalytic oxidation with peroxymonosulphate.
  • Response surface methodology optimized peroxymonosulphate activation conditions, while cycling trials verified structural and catalytic stability for water treatment.

Cite This Study

Terrón et al. (2024) studied this question.

synapsesocial.com/papers/68e637f1b6db6435875c97edhttps://doi.org/10.1016/j.jece.2024.113403
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