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The Addition of Graphene and Magnetite Materials in TiO2/CuO Catalyst for Enhancing Photosonocatalytic Performance and Reusability

机译:在TiO2 / CuO催化剂中添加石墨烯和磁铁矿材料,用于增强光致催化性能和可重用性

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In the present study, TiO2/CuO with the addition of graphene and magnetite materials were investigated as a catalyst for waste water removal through the photosonocatalytic process. TiO2/CuO/graphene and Fe3O4/TiO2/CuO/graphene were synthesized by using the sol-gel method. Their physical properties were characterized by using X-ray Diffraction, Fourier Transform Infra-red Spectroscopy, Thermogravimetric Analysis, Transmission Electron Microscope, and Breneur Emmet Teller (BET) surface area analyzer. The Photosonocatalytic activity was examined under visible light irradiation and 40 kHz ultrasound frequency with methyl orange (MO) as a model of organic pollutant. Compared to photocatalytic and sonocatalytic process, photosonocatalytic activity can improve the degradation process due to a synergistic effect between photocatalytic and sonocatalytic process at the same time. The addition of graphene materials can improve the charge carrier separation and prevent recombination electron and holes. Therefore, the photosonocatalytic performance increases significantly with the addition of graphene materials. The addition of magnetite materials is not only can enhance the photosonocatalytic performance but also can improve the separation process for reuse the catalyst. The photosonocatalytic mechanism was correlated with their physical properties and visible as well as ultrasound irradiation.
机译:在本研究中,研究了通过加入石墨烯和磁铁矿材料的TiO 2 / CuO作为通过光催化过程废水去除的催化剂。通过使用溶胶 - 凝胶法合成TiO2 / CuO /石墨烯和Fe 3 O 4 / TiO 2 / CuO /石墨烯。通过使用X射线衍射,傅里叶变换红外光谱,热重分析,透射电子显微镜和一块牛头柜射击者(BET)表面积分析仪来表征它们的物理性质。在可见光辐照下检测光刻催化活性和40 kHz超声频率,用甲基橙(Mo)作为有机污染物模型。与光催化和单催化过程相比,光催化活性可以提高降解过程,由于光催化和同催化过程同时。添加石墨烯材料可以改善电荷载体分离并防止重组电子和孔。因此,光晕催化性能随着添加石墨烯材料而显着增加。添加磁铁矿材料不仅可以增强光催化性能,还可以改善再利用催化剂的分离过程。光刻催化机制与物理性质相关,并且可见,以及超声辐照。

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