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Development of an E-H2O2/TiO2 photoelectrocatalytic oxidation system for water and wastewater treatment

机译:用于水和废水处理的E-H2O2 / TiO2光电催化氧化系统的开发

摘要

In this study, an innovative E-H2O2/TiO2 (E-H2O2 = electrogenerated hydrogen peroxide) photoelectrocatalytic (PEC) oxidation system was successfully developed for water and wastewater treatment. A TiO2/Ti mesh electrode was applied in this photoreactor as the anode to conduct PEC oxidation, and a reticulated vitreous carbon (RVC) electrode was used as the cathode to electrogenerate hydrogen peroxide simultaneously. The TiO2/Ti mesh electrode was prepared with a modified anodic oxidation process in a quadrielectrolyte (H 2SO4-H3PO4-H2O 2-HF) solution. The crystal structure, surface morphology, and film thickness of the TiO2/Ti mesh electrode were characterized by X-ray diffraction and scanning electron microscopy. The analytical results showed that a honeycomb-type anatase film with a thickness of 5 μm was formed. Photocatalytic oxidation (PC) and PEC oxidation of 2,4,6-trichlorophenol (TCP) in an aqueous solution were performed under various experimental conditions. Experimental results showed that the TiO2/Ti electrode, anodized in the H2SO4-H3PO4-H2O 2-HF solution, had higher photocatalytic activity than the TiO 2/ Ti electrode anodized in the H2SO4 solution. It was found that the maximum applied potential would be around 2.5 V, corresponding to an optimum applied current density of 50 μA cm-2 under UV-A illumination. The experiments confirmed that the E-H 2O2 on the RVC electrode can significantly enhance the PEC oxidation of TCP in aqueous solution. The rate of TCP degradation in such an E-H2O2-assisted TiO2 PEC reaction was 5.0 times that of the TiO2 PC reaction and 2.3 times that of the TiO 2 PEC reaction. The variation of pH during the E-H2O 2-assisted TiO2 PEC reaction, affected by individual reactions, was also investigated. It was found that pH was well maintained during the TCP degradation in such an E-H2O2/TiO 2 reaction system. This is beneficial to TCP degradation in an aqueous solution.
机译:在这项研究中,成功​​开发了一种创新的E-H2O2 / TiO2(E-H2O2 =电产生的过氧化氢)光电催化(PEC)氧化系统,用于水和废水处理。在该光反应器中,将TiO2 / Ti网状电极用作阳极进行PEC氧化,并使用网状玻璃碳(RVC)电极作为阴极同时电生成过氧化氢。 TiO2 / Ti网状电极是在四电解液(H 2SO4-H3PO4-H2O 2-HF)溶液中采用改进的阳极氧化工艺制备的。用X射线衍射和扫描电镜对TiO2 / Ti网状电极的晶体结构,表面形貌和膜厚进行了表征。分析结果表明,形成了厚度为5μm的蜂窝型锐钛矿膜。在各种实验条件下,对水溶液中的2,4,6-三氯苯酚(TCP)进行光催化氧化(PC)和PEC氧化。实验结果表明,在H2SO4-H3PO4-H2O 2-HF溶液中进行阳极氧化的TiO2 / Ti电极比在H2SO4溶液中进行阳极氧化的TiO 2 / Ti电极具有更高的光催化活性。发现最大施加电势为约2.5V,对应于在UV-A照明下的最佳施加电流密度为50μAcm-2。实验证实,RVC电极上的E-H 2O2可以显着增强水溶液中TCP的PEC氧化。在这种E-H 2 O 2辅助的TiO 2 PEC反应中,TCP的降解速率是TiO 2 PC反应的5.0倍和TiO 2 PEC反应的2.3倍。还研究了E-H2O 2辅助的TiO2 PEC反应过程中pH值受单个反应的影响。发现在这样的E-H 2 O 2 / TiO 2反应系统中,TCP降解期间pH被很好地保持。这有利于水溶液中TCP的降解。

著录项

  • 作者

    Li XZ; Liu HS;

  • 作者单位
  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 eng
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