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首页> 外文期刊>Journal of Chemical Engineering of Japan >A Titanium Dioxide-Silica Glass Granule Packed Bed Reactor for Degradation of Airborne Organic Compounds
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A Titanium Dioxide-Silica Glass Granule Packed Bed Reactor for Degradation of Airborne Organic Compounds

机译:降解空气中有机物的二氧化钛-二氧化硅玻璃颗粒填充床反应器

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References(32) Cited-By(3) In order to ensure the practical application of a titanium dioxide-based photocatalytic system, it is essential that reactors capable of being scaled up be designed. This has been difficult due to the issue of light distribution and irradiation of the photocatalytic surface. In this paper, a novel design utilizing a mixture of glass granules and titanium-dioxide coated particles are used in a packed bed configuration. A detailed phenomenological model to predict degradation rates of gas phase organic species (toluene) is developed. The parameters of the model are evaluated by experiments performed in differential bed reactors. These are then used in the model and the predictions are compared to the measured values, and reasonable agreement is obtained. The surface area utilization factor is approximately 0.66, indicating that a large fraction of the surface is being irradiated. These configurations can therefore be scaled up for use in larger scale applications.
机译:参考文献(32)Cited-By(3)为了确保基于二氧化钛的光催化系统的实际应用,设计能够放大的反应器至关重要。由于光分布和光催化表面的照射问题,这已经很困难。在本文中,一种采用玻璃颗粒和二氧化钛涂层颗粒混合物的新颖设计用于填充床配置。建立了详细的现象学模型来预测气相有机物(甲苯)的降解速率。通过在差化床反应器中进行的实验来评估模型的参数。然后将它们用于模型中,并将预测与测量值进行比较,并获得合理的一致性。表面积利用率约为0.66,表明大部分表面被辐照。因此,这些配置可以按比例放大以用于大规模应用。

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