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Solar light-assisted photocatalytic degradation of methylene blue with Mo/TiO2: a comparison with Cr- and Ni-doped TiO2

机译:MO / TiO2的太阳能光辅助光催化降解亚甲基蓝色:与Cr-和Ni-掺杂TiO2的比较

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Highly active Cr-doped, Ni-doped and Mo-doped TiO2 photocatalysts were synthesized by a sol-gel method. The synthesized catalysts were characterized by UV-DRS, BET, XRD, FE-SEM-EDS, TEM and XPS. Metal doping decreased the band gap of TiO2 to 2.83 eV for Mo-doped TiO2 and Ni-doped TiO2. The activity of the synthesized photocatalysts was evaluated by studying the degradation of MB as a model pollutant under both UV and solar irradiation. The Mo/TiO2 catalyst achieved 98% degradation under solar light within 120 min. The activity of the catalysts was in the order Ni-doped TiO2 Cr-doped TiO2 TiO2 Mo-doped TiO2. The optimum activity was found at a loading of 1.5 g/L of Mo-doped TiO2 under both UV and solar irradiation. The degradation was rapid at pH 7 and followed pseudo-first order kinetics. Degradation by-products were analyzed on HR-LCMS and a mechanism is proposed.
机译:通过溶胶 - 凝胶法合成高度活性的Cr掺杂,Ni掺杂的Ni掺杂和Mo掺杂的TiO2光催化剂。 通过UV-DRS,BET,XRD,Fe-SEM EDS,TEM和XPS表征合成催化剂。 金属掺杂降低了用于Mo掺杂的TiO2和Ni掺杂TiO2的TiO2至2.83eV的带隙。 通过在UV和太阳照射下研究MB的降解作为模型污染物来评估合成光催化剂的活性。 Mo / TiO2催化剂在120分钟内实现了太阳光下的98%的降解。 催化剂的活性在Ni掺杂的TiO 2& CR掺杂的TiO2& TiO2& 莫掺杂TiO2。 在紫外线和太阳照射下,在载荷为1.5g / L的Mo掺杂的TiO 2时发现了最佳活性。 降解在pH&gt时迅速快速; 7并跟踪伪第一订单动力学。 在HR-LCMS上分析降解副产物,提出了一种机理。

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