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首页> 外文期刊>Journal of Applied Electrochemistry >Modeling of the photocatalytic decomposition of gaseous benzene in a TiO_2-coated optical fiber photoreactor
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Modeling of the photocatalytic decomposition of gaseous benzene in a TiO_2-coated optical fiber photoreactor

机译:TiO_2包覆光纤光反应器中气态苯光催化分解的模型

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摘要

Photocatalytic decomposition of benzene in an air stream in a continuous TiO_2-coated optical fiber photoreactor (OFF) was demonstrated to be effective at relatively short retention times. An increase in TiO_2 coating thickness, fiber length and retention time improved the decomposition of benzene; however, excessive TiO_2 coating thickness and optical fiber length may hamper the reaction. The UV light intensity distribution on and within the optical fiber was modeled using Snail's law and UV light energy balance. The modeled profile indicated that the UV light intensity decreased rapidly along the axial and radial directions of the optical fiber. A mathematical model combining the continuity equations and Langmuir-Hinshelwood surface kinetics was established to adequately describe the reaction behavior of benzene decomposition in the OFF with only single TiO_2-coated fiber.
机译:在连续的TiO_2涂覆的光纤光反应器(OFF)中,气流中苯的光催化分解被证明在相对较短的保留时间内是有效的。 TiO_2涂层厚度,纤维长度和保留时间的增加可改善苯的分解;但是,过量的TiO_2涂层厚度和光纤长度可能会阻碍反应。使用Snail定律和UV光能量平衡对光纤上和内部的UV光强度分布进行建模。建模的轮廓表明,紫外线强度沿光纤的轴向和径向方向迅速减小。建立了将连续性方程和Langmuir-Hinshelwood表面动力学相结合的数学模型,以充分描述仅用TiO_2包覆的纤维在苯酚中苯的分解反应行为。

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