An efficient system for electro-Fenton oxidation of pesticide by a reduced graphene oxide-aminopyrazine@3DNi foam gas diffusion electrode

  • Senthilnathan, Jaganathan
  • Younis, Sherif A.
  • Kwon, Eilhann E.
  • Surenjan, Anupama
  • Kim, Ki-Hyun
  • 외 1명
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초록

A stable rGO-AmPyraz@3DNiF gas diffusion electrode was prepared via modification of 3D nickel foam (3D-NiF) with aminopyrazine functionalized reduced graphene oxide (rGO-AmPyraz) for the electro Fenton (EF) process. The generation capacity of H2O2 and OH radicals by this electrode was assessed relative to 3DNiF and rGO-AmPyraz@indium fin oxide (ITO) electrodes and with/without a coated Fe3O4 plate. The rGO-AmPyraz@3DNiF electrode showed the maximum production of these radicals at 2.2 mmol h(-1) and 410 mu mol h(-1), respectively (pH 3) with the least leaching of Ni2+ such as < 0.5 mg L-1 even after 5 cycles (e.g., relative to 3DNiF (24 mg L-1). Such control on Ni ion leaching was effective all across the tested pH from 3 to 8.5. Its H2O2 generation capacity was far higher than that of the nanocarbon supported on commercially available ITO conducive glass. The mineralization of dichlorvos (at initial concentration: 50 mg L-1) was confirmed with its complete degradation as the concentrations of the end products (e.g., free Cl-1 (5.36 mg L-1) and phosphate (12.89 mg L-1)) were in good agreement with their stoichiometric concentration in dichlorvos. As such, the proposed system can be recommended as an effective electrode to replace nanocarbon-based product commonly employed for EF processes.

키워드

Gas-diffusion electrodeAminopyrazine functionalized graphene oxide3D nickel foamElectro-Fenton processDichlorvosCoated Fe3O4 plateSUBMERGED LIQUID PLASMALOW-ENERGY SYNTHESISFUNCTIONAL MATERIALSFE3O4 NANOPARTICLESHYDROGEN-PEROXIDECOMPOSITE CATHODECARBON NANOTUBESDEGRADATIONGENERATIONH2O2
제목
An efficient system for electro-Fenton oxidation of pesticide by a reduced graphene oxide-aminopyrazine@3DNi foam gas diffusion electrode
저자
Senthilnathan, JaganathanYounis, Sherif A.Kwon, Eilhann E.Surenjan, AnupamaKim, Ki-HyunYoshimura, Masahiro
DOI
10.1016/j.jhazmat.2020.123323
발행일
2020-12
유형
Article
저널명
Journal of Hazardous Materials
400
페이지
1 ~ 14