[1]. Zhou A., MaX. and SongC., “Effects of oxidative modification of carbon surface on the adsorption of sulfur compounds in diesel fuel,” Applied Catalysis B: Environmental., Vol. 87, No. 3, pp. 190-199, 2009.##
[2]. Audeh C. A., “Washington, DC: U.S. patent and trademark office,” U.S. Patent: 5, 1994. ##
[3]. Srivastava V. C., “An evaluation of desulfurization technologies for sulfur removal from liquid fuels,” Rsc Advances., Vol. 2, No. 3, pp. 759-783, 2012.##
[4]. BabichI V. and Moulijn J. A., “Science and technology of novel processes for deep desulfurization of oil refinery streams: a review,” Fuel., Vol. 82, No. 6, pp. 607-631, 2003.##
[5]. Bourane A., Koseoglu O. R., Kressmann S. C., “Washington, DC: U.S. patent and trademark office,” U.S. Patent: 9, 2017. ##
[6]. Qian E. W., “Development of novel nonhydrogenation desulfurization process-oxidative desulfurization of distillate,” Journal of the Japan Petroleum Institute., Vol. 51, No. 1, pp. 14-31, 2008.##
[7]. Nehlsen J. P., “Developing clean fuels: novel techniques for desulfurization,” Princeton, NJ: Princeton University, 2006. ##
[8]. García-GutiérrezJ. L., Fuentes G. A., Hernández-Terán M. E.,Garcia P., Murrieta-Guevara F., Jiménez-CruzF., “Ultra-deep oxidative desulfurization of diesel fuel by the Mo/Al2O3-H2O2 system: the effect of system parameters on catalytic activity,” Applied Catalysis A: General, Vol. 334, No .1, pp. 366-373, 2008.##
[9]. Zhao R., Li X., Su J. and Gao X., “Preparation of WO3/gC3N4 composites and their application in oxidative desulfurization,” Applied Surface Science, Vol. 392, pp. 810-816, 2017. ##
[10]. Nemeth L., Oroskar A., BusscheK. V., Nowak F. M. and Schmidt M., “Patent cooperation treaty (PCT) information,” U.S. Patent Application: 11, 2006. ##
[11]. Zhao R., Li X., Su J. and Gao X., “Preparation of WO3/gC3N4 composites and their application in oxidative desulfurization,” Applied Surface Science., Vol. 392, pp. 810-816, 2017. ##
[12]. Wang C., Zhu W., Xu Y., Xu H., Zhang M., Chao Y. and Wang J., “Preparation of TiO2/gC3N4 composites and their application in photocatalytic oxidative desulfurization,” Ceramics International, Vol. 40, No. 8, pp. 11627-11635, 2014.##
[13]. Zhu Y., Li X. and Zhu M., “Mesoporous graphitic carbon nitride as photo- catalyst for oxidative desulfurization with oxygen,” Catalysis Communications., Vol. 85, pp. 5-8, 2016. ##
[14]. Li X., Zhang J.,Shen L., Ma Y.,Lei W.,Cui Q. and Zou G., “Preparation and characterization of graphitic carbon nitride through pyrolysis of melamine,” Applied Physics A, Vol. 94, No. 2, pp. 387-392, 2009.##
[15]. He Y., Zhang L., Wang X., Wu Y., Lin H., Zhao L. and Fan M., “Enhanced photodegradation activity of methyl orange over Z-scheme type MoO3–gC3N4 composite under visible light irradiation,” RSC Advances, Vol. 4, No. 26, pp. 13610-13619, 2014.##
[16]. Zhao H., Xia S. and Ma P., “Use of ionic liquids as ‘green’solvents for extractions,” Journal of Chemical Technology and Biotechnology, Vol. 80, No.10, pp.1089-1096, 2005. ##