Title of article :
Graphene oxide–Fe2V4O13 hybrid material as highly efcient hetero‑Fenton catalyst for degradation of methyl orange
Author/Authors :
Muthuvel, Inbasekaran Department of Chemistry - Annamalai University -India , Gowthami, Kaliyamoorthy Department of Chemistry - Annamalai University -India , Thirunarayanan, Ganesamoorthy Department of Chemistry - Annamalai University -India , Suppuraj, Palusamy Department of Chemistry - Annamalai University -India , Krishnakumar, Balu Department of Chemistry - University of Coimbra - Portugal , Nascimento Sobral, Abílio José Fraga do Department of Chemistry - University of Coimbra - Portugal , Swaminathan, Meenakshisundaram Nanomaterials Laboratory - International Research Centre - Kalasalingam University - India
Abstract :
A new hetero-Fenton type GO/Fe2V4O13 was developed and characterized by FT-IR, XRD, HR-SEM, TEM, and UV-DRS
analysis. XRD pattern reveals the presence of monoclinic phase of Fe2V4O13 in the catalyst. TEM images show the particle
sizes in the range from 20 to 100 nm and the nice dispersion of nanosized Fe2V4O13 particles on the surface of the graphene
oxide. The hetero-Fenton catalyst was used for the degradation of Methyl orange (MO) under UV and solar light. The mineralization rate was infuenced by H2O2 concentration, pH, and catalyst loading. The reusability 21% GO/Fe2V4O13 was
analyzed. GO/Fe2V4O13 was stable and reusable up to fve cycles with 95% degradation. Solar experiments were carried out
at diferent initial solution pH with Fe2V4O13 and 21% GO/Fe2V4O13. Both catalysts show maximum degradation efciency
at pH 6. Mechanism of heterophoto-Fenton process is also proposed. This study reveals that Fe2V4O13 and 21% GO/Fe2V4O13
catalysts are efcient under UV and solar light for the degradation MO and can be utilized for the treatment of dye wastewater.
Keywords :
Fe2V4O13 , Graphene oxide , Wastewater treatment , Hetero-Fenton reaction , Photocatalysis
Journal title :
International Journal of Industrial Chemistry (IJIC)