4.7 Article

Enhanced degradation of azo dye in wastewater by pulsed discharge plasma coupled with MWCNTs-TiO2/γ-Al2O3 composite photocatalyst

Journal

JOURNAL OF ENVIRONMENTAL MANAGEMENT
Volume 172, Issue -, Pages 186-192

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jenvman.2016.02.040

Keywords

Pulsed discharge plasma; Carbon nanotubes; TiO2; Degradation; Azo dye

Funding

  1. National Natural Science Foundation of China [21107085]
  2. Natural Science Foundation of Shaanxi Province [K3320215185]
  3. Fundamental Research Funds for the Central Universities [QN2013073]

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In order to improve the photocatalytic performance of TiO2 in pulsed discharge plasma systems, easily recycled multi rbon nanotubes (MWCNTs)-TiO2 supported on gamma-Al2O3 (MWCNTs-TiO2/gamma-Al2O3) composite photocatalyst were prepared. The morphology and physicochemical properties of the prepared catalysts were investigated using XRD, SEM, FTIR and UV-vis spectroscopy. The photocatalytic activity was evaluated by degradation of azo dye acid orange II (AO7) in wastewater under pulsed discharge plasma. The results indicate that the MWCNTs-TiO2/gamma-Al2O3 composite catalyst possesses enhanced photocatalytic activity facilitating the decomposition of AO7 compared with TiO2/gamma-Al2O3 composite in pulsed discharge plasma systems. Under pulsed discharge plasma, almost 100% AO7 is degraded by the MWCNTs-TiO2/gamma-Al2O3 composite after 60 min at optimal conditions. The degradation efficiency of AO7 is also affected by the dosage of the composite catalyst and pulsed discharge peak voltage. As the amount of MWCNTs-TiO2/gamma-Al2O3 composite and pulsed discharge peak voltage increases, the degradation efficiency of AO7 increases. The photocatalyst was implemented for 6 cycles and the degradation efficiency of AO7 remains higher than 85% under pulsed discharge plasma. Results indicate that the catalyst displays easy separation and minimal deactivation after several uses. Possible decomposition mechanisms were also investigated. MWCNTs are capable of improving the photocatalytic activity of TiO2/gamma-Al2O3 composite in pulsed discharge plasma systems primarily due to the photo-induced electron absorption effect and the electron trap effect of MWCNTs. The results of this study establish the feasibility and potential implementation of MWCNTs-TiO2/gamma-Al2O3 composites in pulsed discharge plasma systems for the degradation of dye wastewater. (C) 2016 Elsevier Ltd. All rights reserved.

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