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Synergistically combining peracetic acid and reduced graphene oxide membranes to degrade trace organic contaminants

  • Erda Deng
  • , Zachary T. Kralles
  • , Siavash Mohamadi
  • , Sagnik Das
  • , Ruveen Dias
  • , Ning Dai
  • , Haiqing Lin
  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

The removal of trace organic contaminants is a critical step for the reuse of municipal and industrial wastewater. Herein, we demonstrate a catalytic membrane platform synergistically integrating reduced graphene oxide (rGO) membranes and peracetic acid (PAA) oxidation, using a dye of methylene blue (MB) and a pesticide of 2,4-dichlorophenoxyacetic acid (2,4-D) as model contaminants. In a crossflow system with rGO membrane and 25 ppm PAA, the degradation rates of MB and 2,4-D were 22 and 0.12 g h−1 per g rGO, with an initial concentration of 10 and 1.1 ppm, respectively. The degradation time profile of MB and 2,4-D follows a pseudo-first-order model, and the degradation rate constant increases with increasing initial PAA doses. The rGO membranes also exhibited good stability over a 1-month test for 2,4-D degradation. In addition to the nanofiltration performance of the rGO membrane, the integrated PAA-rGO membrane process shows great potential to degrade various organic contaminants without the need to separate and recover the metal-free catalyst in downstream treatment.

Original languageEnglish
Article number164302
JournalChemical Engineering Journal
Volume517
DOIs
StatePublished - Aug 1 2025

Keywords

  • 2,4-D
  • Advanced oxidation processes (AOP)
  • Catalytic membranes
  • Methylene blue
  • Peracetic acid
  • Reduced graphene oxide membranes

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