4.8 Article

Enhanced simultaneous simultaneous PEC eradication of bacteria and antibiotics by facilely fabricated high-activity {001} facets TiO2 mounted onto TiO2 nanotubular photoanode

Journal

WATER RESEARCH
Volume 101, Issue -, Pages 597-605

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.watres.2016.06.001

Keywords

TiO2-based photoanode; {001} facets TiO2; Photoelectrocatalysis; Bacterial inactivation; Ciprofloxacin degradation

Funding

  1. National Natural Science Funds for Distinguished Young Scholars [41425015]
  2. NSFC [41573086, 41373103]
  3. Australian Research Council (ARC) Discovery Project
  4. Research Grant Council, Hong Kong SAR Government [GRF14100115]
  5. Grants-in-Aid for Scientific Research [26220911] Funding Source: KAKEN

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Biohazards and coexisted antibiotics are two groups of emerging contaminants presented in various aquatic environments. They can pose serious threat to the ecosystem and human health. As a result, inactivation of biohazards, degradation of antibiotics, and simultaneous removal of them are highly desired. In this work, a novel photoanode with a hierarchical structured [001) facets exposed nano-size single crystals (NSC) TiO2 top layer and a perpendicularly aligned TiO2 nanotube array (NTA) bottom layer (NSC/NTA) was successfully fabricated. The morphology and facets of anatase TiO2 nanoparticles covered on the top of NTA layer could be controlled by adjusting precalcination temperature and heating rate as the pure NTA was clamped with glasses. Appropriate recalcination can timely remove surface F from {001} facets, and the photocatalytic activity of the resultant photoanode was subsequently activated. NSC/NTA photoanode fabricated under 500 degrees C precalcination with 20 degrees C min(-1) followed by 550 degrees C recalcination possessed highest photoelectrocatalytic efficiency to simultaneously remove bacteria and antibiotics. Results suggest that two-step calcination is necessary for fabrication of high photocatalytic activity NSC/NTA photoanode. The capability of simultaneous eradication of bacteria and antibiotics shows great potential for development of a versatile approach to effectively purify various wastewaters contaminated with complex pollutants. (C) 2016 Elsevier Ltd. All rights reserved.

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