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Degradation of Phenol in the Micro-Polluted Water Using SiO2-TiO2/PAN Photocatalytic Purifier

机译:使用SiO2-TiO2 / PAN光催化剂在微污水中降解苯酚

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The organic micro-polluted water had seriously threatened the safety of human drinking water. Many purification methods were adopted to remove the trace organics, including the photocatalytic technique. In this study, the SiO_2-TiO_2 thin film coated polyacrylonitrile (PAN) yarn photocatalytic purifier developed by the sol-gel water vapor method was used for degradation of phenol in the micro-polluted water. The SiO_2-TiO_2/PAN photocatalyst was characterized by SEM, XRD analysis. The effects of initial concentration of phenol on the degradation efficiency were investigated. The experimental results showed that the silicon doped could promote the anatase productivity on the PAN yarn surface under low temperature, and the photocatalytic purifier could efficiently mineralize phenol. The photocatalytic degradation followed the first-order reaction kinetics. After 24 hours irradiation, the degradation efficiency of phenol and TOC reached 95% and 52%, respectively. Therefore, the SiO_2-TiO_2/PAN purifier had a broad application prospect on micro-polluted water purification.
机译:有机微污染的水严重威胁着人类饮用水的安全性。采用许多纯化方法去除痕量有机物,包括光催化技术。在该研究中,通过溶胶 - 凝胶水蒸气法开发的SiO_2-TiO_2薄膜涂覆的聚丙烯腈(PAN)纱线光催化净化器用于微污染水中的苯酚的降解。 SEM,SEM_2-TIO_2 / PAN光催化剂的特点是SEM,XRD分析。研究了初始浓度对降解效率的初始浓度的影响。实验结果表明,掺杂的硅可以在低温下促进潘纱表面上的锐钛矿生产率,并且光催化净化器可以有效地融化苯酚。光催化降解遵循一阶反应动力学。 24小时后照射后,苯酚和TOC的降解效率分别达到95%和52%。因此,SiO_2-TiO_2 / PAN净化器对微污染的水净化具有广泛的应用前景。

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