4.7 Article

Coupling of membrane filtration and advanced oxidation processes for removal of pharmaceutical residues: A critical review

Journal

SEPARATION AND PURIFICATION TECHNOLOGY
Volume 156, Issue -, Pages 891-914

Publisher

ELSEVIER
DOI: 10.1016/j.seppur.2015.09.059

Keywords

Pharmaceuticals; Membrane separation; Advanced oxidation processes; Hybrid process; Electrochemical oxidation

Funding

  1. European Union through Erasmus Mundus Joint Doctorate Programme ETeCoS3 [2010-0009]
  2. ANR (French National Research Agency) through ANR EcoTechnologies et EcoServices (ECO TS) - CElectrON: Couplage Electro-Oxydation et Nanofiltration pour le traitement d'effluents

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Pharmaceuticals as emerging pollutants have become a major concern not only because of the threat posed to health and safety of the aquatic life but also due to their continuous accumulation in aquatic environment and development of antibiotic-resistant microbial strains. Single classical water treatment techniques have been generally inadequate for the removal of these hazardous substances. Combined treatment techniques such as membrane separation and advanced oxidation processes (AOPs) is an exciting technology for complete removal of these pollutants because each technique complements the advantages and overcomes the challenges of the other. Technical flexibility of membrane separation technology has allowed possible integration/coupling with several AOPs as: pretreatment stage for removal of organics (which may cause membrane fouling) from membrane feed stream; post-treatment stage for oxidation of organics in both membrane permeate and concentrate streams or one pot/hybrid process for concurrent separation and oxidation of pollutants in the feed stream. AOPs such as ozonation, peroxone (O-3/H2O2), UV/H2O2, photo-Fenton, photocatalysis and electrochemical advanced oxidation processes (EAOPs) have been successfully integrated with membrane separation for removal of pharmaceuticals from water and they are critically examined in this review. (C) 2015 Elsevier B.V. All rights reserved.

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