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Ultraviolet photocatalytic oxidation for indoor environment applications: Experimental validation of the model

机译:室内环境应用的紫外线光催化氧化:模型的实验验证

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摘要

The development of a reliable and validated model can facilitate the widespread application of ultraviolet photocatalytic oxidation (UV-PCO) for indoor air treatment and purification in building mechanical ventilation systems. This paper reports the development of a time-dependent model for predicting the performance of an in-duct PCO air cleaner under the conditions relevant to the actual applications. The model was developed by integrating light scattering model, reaction kinetic model, mass balance as well as optional ozonation model. The comprehensive model incorporates the influences of properties of light sources and catalyst, reactor geometry, mass transfer parameters, kinetic parameters, operational conditions, as well as ozonation effect. These parameters can be estimated easily from experiments and/ or empirical equations. The UV-PCO model and UV-PCO model combined with ozonation model were validated with experimental results for fiberglass fibers coated with TiO_2 (TiO_2/FGFs) air filters under different conditions. There was good agreement between the prediction made by the model and the experiment results. It was also demonstrated that the developed model can be applied to predict the UV-PCO performance for carbon cloth fibers loaded with TiO_2 (TiO_2/CCFs) air filters.
机译:建立可靠且经过验证的模型可以促进紫外线光催化氧化(UV-PCO)在建筑机械通风系统中进行室内空气处理和净化的广泛应用。本文报告了一种与时间有关的模型的开发,该模型用于预测与实际应用相关的条件下的管道式PCO空气净化器的性能。该模型是通过整合光散射模型,反应动力学模型,质量平衡以及可选的臭氧化模型而开发的。该综合模型综合了光源和催化剂的性质,反应器的几何形状,传质参数,动力学参数,操作条件以及臭氧化作用的影响。这些参数可以通过实验和/或经验公式轻松估算。通过在不同条件下涂覆TiO_2(TiO_2 / FGFs)空气过滤器的玻璃纤维的实验结果验证了UV-PCO模型和UV-PCO模型与臭氧化模型的结合。模型的预测结果与实验结果吻合良好。还证明了所开发的模型可用于预测装有TiO_2(TiO_2 / CCFs)空气过滤器的碳布纤维的UV-PCO性能。

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