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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Indoor air purification using heterogeneous photocatalytic oxidation. Part II: Kinetic study
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Indoor air purification using heterogeneous photocatalytic oxidation. Part II: Kinetic study

机译:使用多相光催化氧化的室内空气净化。第二部分:动力学研究

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摘要

In part 1 to this article [1], the application of the heterogeneous photocatalytic oxidation (PCO) theory for the indoor air quality improvement was presented. With a modified TiO2 that can be activated by visible light as the photocatalyst coated on a special wall paper, and one typical indoor air pollutant nitric oxide (NO) as model pollutant, the PCO experiments were performed in indoor air conditions and results show its effectiveness as an indoor air purifying technology. As the second part of the above mentioned study, this article addresses the kinetics of the photocatalytic oxidation of NO. A kinetic reaction rate model is proposed to describe the PCO of NO under indoor air conditions.The influence of the indoor air conditions such as pollutant concentration, volumetric flow rate of the pollutant, relative humidity, irradiance, dosage of the photocatalyst, and reactor size is considered in this model. As an undesired intermediate product in the process of the PCO of NO nitrogen dioxide (NO2) is incorporated as well from its influence on the PCO process. The good agreement between the predictions from this model and the experimental results indicates the validity of the proposed kinetic model.
机译:在本文的第1部分[1]中,提出了非均相光催化氧化(PCO)理论在室内空气质量改善中的应用。以一种可以被可见光激活的改性TiO2作为涂布在特殊墙纸上的光催化剂,并以一种典型的室内空气污染物一氧化氮(NO)作为模型污染物,在室内空气条件下进行了PCO实验,结果表明了其有效性作为室内空气净化技术。作为上述研究的第二部分,本文讨论了NO的光催化氧化动力学。提出了一个动力学反应速率模型来描述室内空气条件下NO的PCO,室内空气条件对污染物浓度,污染物体积流量,相对湿度,辐照度,光催化剂用量和反应器尺寸等的影响在此模型中被考虑。作为NO的PCO过程中的不希望的中间产物,由于其对PCO过程的影响,也掺入了二氧化氮(NO 2)。该模型的预测结果与实验结果之间的良好一致性表明了所提出动力学模型的有效性。

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