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TiO 纳米管阵列构建阳极上染料的电化学降解。

Electrochemical degradation of dye on TiO nanotube array constructed anode.

机构信息

College of Chemistry & Molecular Sciences, Wuhan University, Wuhan, 430072, People's Republic of China.

Xinjiang Energy Co., LTD, Wulumuqi, 830000, People's Republic of China.

出版信息

Chemosphere. 2019 Nov;235:1189-1196. doi: 10.1016/j.chemosphere.2019.06.170. Epub 2019 Jun 23.

Abstract

A high oxygen evolution potential (2.6V) and conductivity of Ti/TiO NTs/TaO-PbO anode was fabricated by mixed metal oxide. A well-aligned TiO nanotubes was successfully prepared by using 1-butyl-3-methylimidazolium tetrafluoroborate as the electrolyte. The surface structure of anodes were characterized by scanning electron microscope, X-ray diffraction and energy dispersive X-ray spectroscopy. During the electrochemical degradation experiments, the effects of different anodes, current density, initial pH value and concentration were discussed. The results showed that co-doped TaO coating is an effective method to improve the surface morphology and the electrochemical characterization of Ti/TiO NTs/PbO. At the initial pH value of 3 and current density of 12 mA cm, the removal rates of Acid Orange 7 and total organic carbon with Ti/TiO NTs/TaO-PbO anode were almost 100% and 98.3%. Comparing with Ti/PbO anode at the same charge consumption (3 A h L), the instantaneous current efficiency of the Ti/TiO NTs/TaO-PbO anode and Ti/TiO NTs/PbO anode increased by 40.0% and 27.1%, respectively. The highest rate of k on Ti/TiO NTs/TaO-PbO anode was 12.4 μmol (L min). The organic dyes are oxidized into CO and HO by OH radical. The reaction process and mechanism during the electrochemical degradation were discussed.

摘要

通过混合金属氧化物制备了具有高析氧电位(2.6V)和电导率的 Ti/TiO NTs/TaO-PbO 阳极。采用 1-丁基-3-甲基咪唑四氟硼酸盐作为电解液,成功制备了具有良好取向的 TiO 纳米管。通过扫描电子显微镜、X 射线衍射和能量色散 X 射线能谱对阳极的表面结构进行了表征。在电化学降解实验中,讨论了不同阳极、电流密度、初始 pH 值和浓度的影响。结果表明,共掺杂 TaO 涂层是改善 Ti/TiO NTs/PbO 表面形貌和电化学特性的有效方法。在初始 pH 值为 3 和电流密度为 12 mA cm 的条件下,Ti/TiO NTs/TaO-PbO 阳极对酸性橙 7 和总有机碳的去除率几乎达到 100%和 98.3%。与相同电荷消耗(3 A h L)下的 Ti/PbO 阳极相比,Ti/TiO NTs/TaO-PbO 阳极和 Ti/TiO NTs/PbO 阳极的瞬时电流效率分别提高了 40.0%和 27.1%。Ti/TiO NTs/TaO-PbO 阳极的 k on 最高速率为 12.4 μmol(L min)。有机染料通过 OH 自由基氧化成 CO 和 HO。讨论了电化学降解过程中的反应过程和机制。

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