The TiO2 (B) nano-belts with excellent performance prepared via alkaline stirring hydrothermal method and its application to remove 17α-ethynylestradiol
2019
Luo, Lijun | Xia, Lihong | Tan, Wei | Li, Junhong | Barrow, Colin J. | Yang, Wenrong | Wang, Hongbin | Shu, Li
In this work, TiO₂ (B) nano-belts were synthesized by hydrothermal method under stirring, and static conditions and preparation conditions were optimized. The prepared materials were characterized by scanning electron microscopy (SEM), high-resolution transmission electron microscopy (HRTEM), X-ray diffraction (XRD), photoluminescence spectroscopy (PL), and N₂ adsorption/desorption measurement. The photocatalytic performance was evaluated by removing synthetic estrogen 17α-ethynylestradiol (EE2), which is the most potent endocrine-disrupting chemical. The results show that the TiO₂ nano-belt possesses pure metastable monoclinic TiO₂ (B) and has uniform nano-belt shape with 80~120-nm diameters and 62.904 m² g⁻¹ of specific surface area. Under the best optimal preparation conditions (0.5 g P25, 20 mL 10 mol L⁻¹ NaOH, hydrothermal temperature 180 °C for 18 h under stirring, 400 °C calcination for 2 h), the TiO₂ (B) has better catalytic activity with 100.00% removal rate towards 3 mg L⁻¹ EE2 in 120 min. The removal rates of EE2 over catalyst which was prepared under static condition and P25 are 74.66% and 70.71%, respectively. The photocatalytic degradation rate constant of TiO₂ (B) prepared under stirring condition (0.0379 min⁻¹) is 4.51 times and 8.42 times than those of TiO₂ prepared under static condition (0.0084 min⁻¹) and P25 (0.0045 min⁻¹). The excellent photocatalytic activity is mainly ascribed to longer one-dimensional nano-belt structure and effective suppression of photo-produced electron-hole.
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