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Progress and prospect of anodic oxidation for the remediation of perfluoroalkyl and polyfluoroalkyl substances in water and wastewater using diamond electrodes
Authors:Sean T McBeath  Adrián Serrano Mora  Fatemeh Asadi Zeidabadi  Brooke K Mayer  Patrick McNamara  Madjid Mohseni  Michael R Hoffmann  Nigel JD Graham
Institution:1. Linde Laboratories, California Institute of Technology, Pasadena, CA, USA;2. Escuela de Ingeniería Química, Universidad de Costa Rica, San José, Costa Rica;3. Department of Chemical and Biological Engineering, University of British Columbia, Vancouver, Canada;4. Department of Civil, Construction and Environmental Engineering, Marquette University, Milwaukee, WI, USA;5. Department of Civil & Environmental Engineering, Imperial College London, London, UK
Abstract:Although diamond electrodes are widely used in the field of electroanalysis and sensing, their application in the field of environmental engineering has yet to be fully realized. Many research studies have considered their potential application in water and wastewater treatment, where the in-situ electrochemical process can avoid the need for chemical additives by facilitating the oxidation of pollutants on the electrode surface or mediated by electrochemically synthesized oxidants in solution. Diamond-based electro-oxidation can effectively treat a number of organic micropollutants and is now being evaluated for the abatement of perfluoroalkyl and polyfluoroalkyl substances, which pose health concerns and are ubiquitous recalcitrant environmental contaminants. To move implementation of diamond-based electro-oxidation forward, the integration of modifications and codopants to yield more advanced electrode materials needs to be further developed and understood. The progress and current strategies associated with diamond electrode modifications for perfluoroalkyl and polyfluoroalkyl substances abatement as well as future considerations are discussed.
Keywords:Boron-doped diamond  Electro-oxidation  Wastewater  Water treatment  PFAS
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