A ternary nanocomposite consisting of N-doped graphene (NGR)/TiO 2 /activated carbon (NGRT@AC) was prepared, and the components’ synergetic effect on dye degradation was investigated after deposition on the surface of a polysulfone membrane (PSF). As far as we know, this ternary composite catalyst has never previously been used to degrade dyes nor been used as a functional layer for separation membranes. The surface morphology and structure of the as-prepared membranes were analyzed by scanning electron microscopy (SEM) and energy-dispersive X-ray spectroscopy (EDS). The NGRT@AC-modified PSF membrane (NGRT@AC-PSF) presents excellent photodegradation efficiency to methyl orange (MO) under both UV (95.2%) and sunlight (78.1%) irradiation, much higher than those values of PSF, TiO 2 - modified PSF (TiO 2 -PSF), and N-doped graphene/TiO 2 (NGRT)-modified PSF membranes (NGRT-PSF) under the same conditions. The high flux recovery ratio (95.5%) demonstrates that the NGRT@AC-PSF membrane shows improved antifouling performance. The photocatalytic results prove that surface deposition method (95.2%) was better than the blending method (31.1%) for forming high-performance membranes. Therefore, the NGRT@AC-PSF membrane has the potential for broad applications in dye degradation to treat waste water from textile industries.
CITATION STYLE
Wu, T., Zhang, Z., Zhai, D., Liu, Y., Liu, Q., Xue, L., & Gao, C. (2019). Dye degrading and fouling-resistant membranes formed by deposition with ternary nanocomposites of N-doped graphene/TiO 2 /activated carbon. Membranes, 9(1). https://doi.org/10.3390/membranes9010016
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