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Surface-tailored photocatalytic nanomaterials and polymer composites for per- and polyfluoroalkyl substances (PFAS) removal: Recent advances and insights

  • Gokula Krishnan Sivasundari Arumugam
  • , Aswin Kumar Ilango
  • , G. Arthanareeswaran
  • , Hai M. Duong
  • , Mieczysław Łapkowski
  • , Yukesh Kannah Ravi
  • Silesian University of Technology
  • University at Albany
  • National Institute of Technology Tiruchirappalli
  • National University of Singapore
  • Mekong University

Wyniki badań: Wkład do czasopismaArtykuł przeglądowyrecenzja

Abstrakt

Per- and polyfluoroalkyl substances (PFAS) are released from various sources, including plastics, cosmetics, household, and industrial products. It gradually contaminates the surface and groundwater, as well as the soil, leading to adverse effects on living organisms and the environment. Researchers worldwide are investigating and practicing various treatment approaches, including ion exchange, adsorption, advanced oxidation processes (AOPs), and membrane filtration, to remove and degrade PFAS from water and wastewater. Among these, the integration of adsorption and AOP is the most commonly used technique for PFAS removal and degradation. This review briefly discusses the significant outcomes and challenges in adsorption and AOP-based research to date. The impact of PFAS removal and defluorination using photocatalytic metal oxides and metal-organic framework (MOF) coupled nanoparticles under UV and visible light is reviewed in detail. In addition, the importance of photocatalyst surface modification, coupled with a polymer composite, for enhancing PFAS removal and defluorination is also discussed.

Język oryginałuangielski
Numer artykułu123559
CzasopismoJournal of Environmental Chemical Engineering
Tom14
Numer wydania5
Identyfikatory DOI
Status publikacjiOpublikowano - paź 2026

Obszary tematyczne ASJC Scopus

  • Inżynieria chemiczna (różne)
  • Ogólna inżynieria chemiczna
  • Nauki o środowisku (różne)
  • Gospodarka i usuwanie odpadów
  • Zanieczyszczenia
  • Inżynieria ogólna
  • Chemia i technologia procesów

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