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Innovative technologies to remove alkylphenols from wastewater: a review

  • Grégorio Crini
  • , Cesare Cosentino
  • , Corina Bradu
  • , Marc Fourmentin
  • , Giangiacomo Torri
  • , Olim Ruzimuradov
  • , Idil Arslan Alaton
  • , Maria Concetta Tomei
  • , Ján Derco
  • , Mondher Barhoumi
  • , Helena Prosen
  • , Borislav N. Malinović
  • , Martin Vrabeľ
  • , Mohammad Mahmudul Huq
  • , Jafar Soltan
  • , Eric Lichtfouse
  • , Nadia Morin-Crini
  • Laboratoire Chrono-Environnement
  • Istituto di Chimica e Biochimica G. Ronzoni
  • University of Bucharest
  • Université du Littoral Côte-d'Opale
  • Turin Polytechnic University in Tashkent
  • Istanbul Technical University
  • National Research Council of Italy
  • Slovak University of Technology in Bratislava
  • University of Carthage
  • University of Ljubljana
  • University of Banja Luka
  • University of Saskatchewan
  • IRD

科研成果: 期刊稿件文献综述同行评审

27 引用 (Scopus)

摘要

Alkylphenols and alkylphenol polyethoxylates are emerging hazardous contaminants due in particular to their endocrine-disrupting properties. These compounds originate from consumer products such as paints and latex paints, adhesives, inks, formulation of pesticides, paper industry, textile and leather industry, petroleum recovery chemicals, metal working fluids, personal care products, washing agents, cleaners, and detergents. Since classical wastewater treatments have not been designed to remove alkylphenols, these compounds end up polluting ecosystems. Here we review three advanced methods to remove alkylphenols and derivatives. First, innovative polymers, such as cyclodextrin polymers and molecularly imprinted polymers, allow to remove alkylphenols from effluents by adsorption. Second, biotechnologies such as microalgae, biodegradation in constructed wetlands and sequential anaerobic–aerobic digestion treatments. Third, advanced oxidation processes to degrade recalcitrant alkylphenols, e.g., ozone-carbon coupling, electrochemical degradation, photocatalysis, zero-valent iron-activated persulfate coupling, and catalytic ozonation.

源语言英语
页(从-至)2597-2628
页数32
期刊Environmental Chemistry Letters
20
4
DOI
出版状态已出版 - 8月 2022
已对外发布

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