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Synthesis and Performance of TiO2/Fly Ash Cenospheres as a Catalytic Film in a Novel Type of Periodic Air-Sparged Photocatalytic Reactor

机译:新型周期性鼓泡光催化反应器中TiO2 /粉煤灰微球的合成及其催化膜性能

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摘要

The results of a photocatalytic process performed in a new type of inclined, three-phase fluidised bed reactor with a periodic photocatalyst film are presented. These phases were fly ash cenospheres coated with TiO , an aqueous solution of methylene blue and an air stream passing from the bottom of the photoreactor. The cenospheres have a density lower than water and could thus form a catalytic film on a top irradiated window. The formed surface film is stable but is easy to break and be reproduced in a cyclic air-sparged process. Mixing was performed in either a cyclic or a continuous manner. From an operational point of view, the best variant of mixing was a 10 s air-sparge/10 s break with a 50% duty cycle, because it provided the same discolouration efficiency and reduced energy demand by 50% in comparison with the continuous mixing. Due to film formation, the proposed catalytic reactor enables a substantial reduction in the energy required for mixing while maintaining the desired degree of discolouration.
机译:提出了在新型的,具有周期性光催化剂膜的倾斜的三相流化床反应器中进行的光催化过程的结果。这些相是涂有TiO的粉煤灰空心层,亚甲基蓝的水溶液和从光反应器底部通过的气流。空心球的密度低于水,因此可以在顶部辐射窗口上形成催化膜。所形成的表面膜是稳定的,但是容易破裂并且可以在循环空气喷射过程中再现。混合以循环或连续方式进行。从操作的角度来看,最佳的混合方式是10 s空气喷射/ 10 s中断,占空比为50%,因为与连续混合相比,它提供了相同的脱色效率,并且将能源需求降低了50% 。由于成膜,提出的催化反应器能够在保持所需的变色程度的同时大大降低混合所需的能量。

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