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Cu or Fe‐Exchanged Natural Clinoptilolite as Sustainable Light‐Assisted Catalyst for Water Disinfection at Near Neutral pH

  • Paula Prieto‐Laria
  • , Pilar Fernández‐Ibáñez
  • , A. Rabdel Ruiz‐Salvador
  • , Inés Canosa
  • , Amando Flores
  • , Carlos Salameh
  • , José Enrique Domínguez‐Santos
  • , Nuria Ofelia Núñez
  • , Menta Ballesteros
  • , Tania Farías

Research output: Contribution to journalArticlepeer-review

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Abstract

Natural zeolites can be used to obtain effective catalysts for heterogeneous photocatalytic reactions due to their low cost and favorable physicochemical properties for water treatment. In this work, a natural clinoptilolite is modified by incorporating iron (NZ–Fe) and copper (NZ–Cu) as compensation cations through ion exchange processes. Metals incorporation and structural stability are demonstrated through X‐ray diffraction, Fourier transform infrared spectroscopy, and scanning electron microscopy. DR‐UV–Vis measurements are used to estimate the bandgap and predict the photocatalytic performance of both materials. Their effectiviness in heterogeneous photocatalytic systems is confirmed by evaluating the inactivation of E. coli as a model pathogen in water. The bacterial detection limit (initial ≈106 CFU/mL) is reached using 1 gL−1 of both catalysts, 100 ppm of H2O2 under visible light (410–710 nm) and near neutral pH in 2 h, with no post‐treatment regrowth observed. Experimental data are analyzed according to the Chick–Watson, Weibull, and Hom disinfection kinetic models. Although more hydroxyl radicals are generated (trapping tests) and less iron leachate is observed for NZ–Fe, good reusability is attained for three disinfection cycles when NZ–Cu is used. This makes copper‐exchanged clinoptilolite a suitable and low‐cost photocatalyst for water disinfection through heterogeneous photo‐Fenton‐type processes.
Original languageEnglish
Article numbere202500225
Pages (from-to)1-10
Number of pages10
JournalChemPlusChem
Volume90
Issue number11
Early online date18 Sept 2025
DOIs
Publication statusPublished (in print/issue) - 10 Nov 2025

Bibliographical note

Publisher Copyright:
© 2025 The Author(s). ChemPlusChem published by Wiley-VCH GmbH.

Data Availability Statement

The data that support the findings of this study are available from the corresponding author upon reasonable request

Funding

The authors acknowledge funding for the VALZEO project from the European Commission (Horizon\u2010MSCA\u20102021\u2010SE\u201001 under grant agreement n\u00BA 101086354), Programa de Excelencia de la Junta de Andaluc\u00EDa (ProyExcel_00358), and Universidad Pablo de Olavide international cooperation project for development 2022 and interdisciplinary project PPI2303. P. Prieto\u2010Laria is a beneficiary of a research assistant contract from \u201CPrograma Investigo\u201D (Next Generation EU). Funding for open access publishing: Universidad Pablo de Olavide/CBUA.

FundersFunder number
European Commission101086354
_00358, PPI2303

    Keywords

    • visible light
    • natural zeolite
    • bacteria inactivation
    • heterogeneous photocatalysts
    • iron and copper exchange

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