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Modeling of a TiO2-coated quartz wool packed bed photocatalytic reactor

机译:TiO2包覆石英棉填充床光催化反应器的建模

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摘要

A fixed-bed, photocatalytic laboratory reactor aimed to degrade pollutants from water streams was designed and built. Quartz wool coated with a thin film of TiO2 was employed as the reactor filling. The photocatalyst was placed in the reactor forming a loose packing to guarantee the intimate contact among reactants, photons, and the photocatalytic surface. This reactor was employed to study the photocatalytic decomposition of a model pollutant (formic acid). A reactor-radiation-reaction model was developed, which was comprised of the reactor mass balance, radiation model, and kinetic model for the degradation of formic acid. The local superficial rate of photon absorption, which was necessary to evaluate the kinetic, was obtained from the results of a radiation model. The Monte Carlo approach was employed to solve the radiation model, where the interaction between photons and the TiO2-coated fibers of the packing was considered. The kinetic model was derived from a plausible kinetic scheme. Experimental results obtained in the packed-bed reactor, operating in a differential mode and without mass transfer limitations, were used to estimate the parameters of the kinetic model. A satisfactory agreement was observed between model simulations with the derived parameters and experimental results, with a root mean square error less than 8.3%.
机译:设计并建造了旨在降解水流中污染物的固定床光催化实验室反应器。用涂覆有TiO 2薄膜的石英棉作为反应器填充物。将光催化剂放置在反应器中,形成松散的填料,以确保反应物,光子和光催化表面之间的紧密接触。该反应器用于研究模型污染物(甲酸)的光催化分解。建立了反应器辐射反应模型,该模型由反应器质量平衡,辐射模型和甲酸降解的动力学模型组成。从辐射模型的结果中获得了评估动力学所必需的局部光子吸收率。采用蒙特卡罗方法求解辐射模型,其中考虑了光子与填料的TiO2包覆纤维之间的相互作用。动力学模型源自合理的动力学方案。在填充床反应器中获得的实验结果以差分模式运行且没有传质限制,被用于估算动力学模型的参数。在具有导出参数的模型模拟与实验结果之间观察到令人满意的一致性,均方根误差小于8.3%。

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