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Electrochemical Oxidation of Selected Micropollutants from Environment Matrices Using Boron-Doped Diamond Electrodes: Process Efficiency and Transformation Product Detection

  • Filip Gamoń
  • , Sebastian Żabczyński
  • , Małgorzata Szopińska
  • , Mattia Pierpaoli
  • , Dawid Zych
  • , Robert Bogdanowicz
  • , Wojciech Artichowicz
  • , Aneta Łuczkiewicz
  • , Sylwia Fudala-Książek
  • Gdańsk University of Technology
  • University of Opole

Wyniki badań: Wkład do czasopismaArtykułrecenzja

2 Cytowania z bazy Scopus

Abstrakt

Bisphenol A (BPA) and diclofenac (DCF) are among the most prevalent micropollutants in aquatic environments, with concentrations reaching up to several hundred µg/L. These compounds pose significant risks to biodiversity and environmental health, necessitating the development of effective removal methods. However, both BPA and DCF can be resistant to conventional treatment technologies, highlighting the need for innovative approaches. Electrochemical oxidation (EO) has emerged as a promising solution. In this study, we assessed the effectiveness of EO using boron-doped diamond (BDD) anodes to remove BPA and DCF from two types of treated wastewater (TWW-W and TWW-D) and landfill leachate (LL). The evaluation included an analysis of the removal efficiency of BPA and DCF and the identification of transformation products generated during the process. Additionally, the feasibility of the EO-BDD process to remove ammonium nitrogen (N-NH4+) and organic compounds present in these environmental matrices was investigated. The EO-BDD treatment achieved remarkable removal efficiencies, reducing BPA and DCF concentrations by over 96% in LL and TWW-W. Transformation product analyses identified four intermediates formed from parent compounds during the oxidation process. Furthermore, the EO-BDD process effectively removed both chemical oxygen demand (COD) and ammonium nitrogen from LL, although weaker results were observed for TWWs. These findings underscore the potential of the EO-BDD process as an effective method for the removal of BPA and DCF from challenging matrices, such as wastewater containing micropollutants. It also shows promise as a complementary technology for enhancing current conventional wastewater treatment methods, especially biological degradation.

Język oryginałuangielski
Numer artykułu3567
CzasopismoWater (Switzerland)
Tom16
Numer wydania24
Identyfikatory DOI
Status publikacjiOpublikowano - gru 2024

Cele SDG ONZ

Ten wynik przyczynia się do realizacji następujących celów zrównoważonego rozwoju

  1. Cel 3 - Dobre zdrowie i dobre samopoczucie
    Cel 3 Dobre zdrowie i dobre samopoczucie
  2. Cel 6 - Czysta woda i higiena
    Cel 6 Czysta woda i higiena
  3. Cel 12 - Odpowiedzialne zużycie i produkcja
    Cel 12 Odpowiedzialne zużycie i produkcja

Obszary tematyczne ASJC Scopus

  • Biochemia
  • Geografia, planowanie i rozwój
  • Nauka o środowisku wodnym
  • Nauka i technologia wody

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