Dye degrading and fouling-resistant membranes formed by deposition with ternary nanocomposites of N-doped graphene/TiO 2 /activated carbon

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Abstract

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.

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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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