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Radial distribution modeling of liquid-phase phenol concentration in a liquid-solid fluidized bed photoreactor

机译:液固流化床光反应器中液相苯酚浓度的径向分布模型

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A fluidized bed photoreactor with titanium dioxide-immobilized spherical activated carbon particles was examined. The light intensity profile was modeled using the Lambert-Beer rule for the modeling of the radial distribution of liquid-phase phenol concentration in the fluidized bed photoreactor, when considering the reactor composed of numerous differential annular drums and no mass transfer between drums. The model could be well matched with the experimental data which indicated the liquid flow rate of 13.8 L/min was the optimum in the balance of flow rate-related light penetration and photocatalyst concentration. By integration of liquid-phase phenol concentration along the radius, photocatalytic oxidation performance of the photoreactor was evaluated in comparison with the experimental data and model prediction. The results showed that the errors were less than 30% for most of the predictions. It is suggested that mass transfer and flow rate difference along the radial direction should be considered to obtain more precise prediction.
机译:检验了固定有二氧化钛的球形活性炭颗粒的流化床光反应器。当考虑反应器由许多不同的环形鼓组成并且在鼓之间没有质量转移时,使用Lambert-Beer法则对流化床光反应器中液相苯酚浓度的径向分布进行建模,从而对光强度分布进行建模。该模型与实验数据吻合良好,表明液体流速为13.8 L / min是与流速相关的光穿透率和光催化剂浓度的最佳平衡。通过沿半径方向积分液相苯酚浓度,与实验数据和模型预测相比较,评价了光反应器的光催化氧化性能。结果表明,大多数预测的误差均小于30%。建议应考虑沿径向的传质和流速差异以获得更精确的预测。

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