Metal-free graphene-based catalytic membranes for persulfate activation toward organic pollutant removal: a review

Environ Sci Pollut Res Int. 2022 Oct;29(50):75184-75202. doi: 10.1007/s11356-022-23063-z. Epub 2022 Sep 21.

Abstract

Owing to their ultrathin two-dimensional structure and efficient catalytic ability for persulfate activation, graphene-based nanocarbons exhibit considerable application potential in fabricating carbonaceous composite membranes for in situ catalytic oxidation to remove organic pollutants. This approach offers significant advantages over conventional batch systems. However, the relationships between the physicochemical properties of carbon mats and performance of graphene-based catalytic membranes in water purification remain ambiguous. Herein, we summarize the main mechanisms of in situ catalytic oxidation and the facile fabrication strategies of carbonaceous composite membranes. Different factors influencing the performance of graphene-based catalytic membranes are comprehensively discussed. The defective level, heteroatom doping, and stacking morphology of carbon mats and operational conditions during filtration play critical roles in the oxidative degradation of target pollutants. Long-term operation leads to the deterioration of catalytic activity and transmembrane pressure, especially in the complex water matrix. Finally, the present challenges and future perspectives are presented to improve the anti-fouling performance and catalytic stability of membranes and develop scalable fabrication methods to promote the engineering applications of in situ catalytic oxidation in real water purification.

Keywords: Carbon mats; Graphene; Membrane filtration; Persulfate activation; Surface active sites; Water matrix.

Publication types

  • Review

MeSH terms

  • Carbon / chemistry
  • Environmental Pollutants*
  • Graphite* / chemistry
  • Metals
  • Water

Substances

  • Carbon
  • Environmental Pollutants
  • Graphite
  • Metals
  • Water