Published September 23, 2017 | Version v1
Journal article Open

Ultrasound-assisted oxidative-adsorptive desulfurization using highly acidic graphene oxide as a catalyst-adsorbent

  • 1. Department of Organic Chemistry, Faculty of Chemistry, Razi University, Kermanshah 6714967346, Iran
  • 2. School of Chemistry, University of Melbourne, VIC 3010, Australia
  • 3. Department of Chemistry, Faculty of Physice & Chemistry, Alzahra University, Vanak, Tehran, Iran, Nanoscience & Nanotechnology Research Center (NNRC)

Description

Modified graphene oxide by acetic acid moiety (GO/COOH) was synthesized and employed in the ultrasoundassisted
oxidative-adsorptive desulfurization processes. The modified graphene oxide was characterized by scanning electron microscopy (SEM), transmission electron microscopy (TEM), Fourier transform infrared (FTIR) spectroscopy, X-ray photoelectron spectroscopy (XPS), and Raman spectroscopy. The fabricated material was applied to simultaneous oxidation and adsorption of dibenzothiophene (DBT) from model fuel. Adsorption studies were carried out to evaluate its potential for DBT removal. The effects of contact time, initial DBT concentration, and temperature on the removal efficiency of the catalyst-adsorbent were investigated. The equilibrium adsorption results was well-described by the Freundlich isotherm model (at room temperature) and oxidation-adsorption of DBT were achieved by GO/COOH with an outstanding adsorption capacity of 370 mg g−1. The adsorption process followed a pseudo-first-order kinetic model and the adsorption kinetic data suggests that physical interactions are mainly involved on the entire adsorption process (Ea < 40 kJ mol−1). The initial sulfur content of 1000 ppm was reduced to<50 ppm within 300 min, achieving a sulfur removal of about 95%. As a whole, a model fuel with ultra-low sulfur content was obtained by the developed procedure and
GO/COOH shows a high potential for effective desulfurization of diesel fuel as a catalyst-adsorbent.

Notes

Herein, we report the synthesis of modified graphene oxide with acetic acid moiety as a heterogeneous catalyst-adsorbent in the presence of hydrogen peroxide for the removal of DBT, as a model compound, under ultrasound irradiation to increase emulsification and improve interfacial oxidation reaction.

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