A critical review on paracetamol removal from different aqueous matrices by Fenton and Fenton-based processes, and their combined methods

Martin Pacheco-Álvarez, Ricardo Picos Benítez, Oscar M. Rodríguez-Narváez, Enric Brillas, Juan M. Peralta-Hernández

Research output: Contribution to journalArticlepeer-review

37 Scopus citations

Abstract

Paracetamol (PCT), also known as acetaminophen, is a drug used to treat fever and mild to moderate pain. After consumption by animals and humans, it is excreted through the urine to the sewer systems, wastewater treatment plants, and other aquatic/natural environments. It has been detected in trace amounts in effluents of wastewater plant treatments, sewage sludge, hospital wastewaters, surface waters, and drinking water. PCT can cause genetic code damage, oxidative degradation of lipids, and denaturation of protein in cells, and its toxicity has been well-proven in bacteria, algae, macrophytes, protozoan, and fishes. To avoid its harmful health problems over living beings, powerful Fenton and Fenton-based treatments as pre-eminent advanced oxidation processes (AOPs) have been developed because of the inefficient treatment by conventional treatments. This paper presents a comprehensive and critical review over the application of such Fenton technologies to remove PCT from natural waters, synthetic wastewaters, and real wastewaters. The characteristics and main results obtained using Fenton, photo-Fenton, electro-Fenton, and photoelectro-Fenton are described, making special emphasis in the oxidative action of the generated reactive oxygen species. Hybrid processes based on the coupling with ultrasounds, gamma radiation, photocatalysis, photoelectrocatalysis, zero-valent iron-activated persulfate, adsorption, and microbial fuel cells, are analyzed. Sequential treatments involving the initiation with plasma gliding arc discharge and post-biological process are detailed. Comparative results with other available AOPs are also described and discussed. Finally, 13 aromatic by-products and 9 short-linear aliphatic carboxylic acid detected during the PCT removal by Fenton and Fenton-based processes are reported, with the proposal of three parallel pathways for its initial degradation.

Translated title of the contributionUna revisión crítica sobre la eliminación de paracetamol de diferentes matrices acuosas mediante procesos en Fenton y basados-en-Fenton, y sus métodos combinados
Original languageEnglish
Article number134883
Pages (from-to)134883
Number of pages22
JournalChemosphere
Volume303
Issue numberPt 1
DOIs
StatePublished - Sep 2022

Keywords

  • Electro-Fenton
  • Fenton
  • Paracetamol
  • Photo-fenton
  • Photoelectro-Fenton
  • Water treatment
  • Water
  • Water Pollutants, Chemical
  • Oxidation-Reduction
  • Hydrogen Peroxide/metabolism
  • Wastewater
  • Water Purification/methods
  • Animals
  • Acetaminophen

Fingerprint

Dive into the research topics of 'A critical review on paracetamol removal from different aqueous matrices by Fenton and Fenton-based processes, and their combined methods'. Together they form a unique fingerprint.

Cite this