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首页> 外文期刊>The Korean journal of chemical engineering >Wastewater treatment using photo-impinging streams cyclone reactor:Computational fluid dynamics and kinetics modeling
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Wastewater treatment using photo-impinging streams cyclone reactor:Computational fluid dynamics and kinetics modeling

机译:使用光撞击流旋风反应器处理废水:计算流体动力学和动力学模型

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A photo impinging streams cyclone reactor has been used as a novel apparatus in photocatalytic degradation of organic compounds using titanium dioxide nanoparticles in wastewater. The operating parameters, including catalyst loading, pH, initial phenol concentration and light intensity have been optimized to increase the efficiency of the photocatalytic degradation process within this photoreactor. The results have demonstrated a higher efficiency and an increased performance capability of the present reactor in comparison with the conventional processes. In the next step, residence time distribution (RTD) of the slurry phase within the reactor was measured using the impulse tracer method. A CFD-based model for predicting the RTD was also developed which compared well with the experimental results. The RTD data was finally applied in conjunction with the phenol degradation kinetic model to predict the apparent rate coefficient for such a reaction.
机译:光撞击流旋风分离器已被用作一种新型设备,用于废水中使用二氧化钛纳米颗粒的光催化降解有机化合物。已经优化了包括催化剂负载,pH,初始苯酚浓度和光强度在内的操作参数,以提高该光反应器内光催化降解过程的效率。结果表明,与常规方法相比,本反应器具有更高的效率和更高的性能。在下一步中,使用脉冲示踪法测量淤浆相在反应器中的停留时间分布(RTD)。还建立了基于CFD的RTD预测模型,该模型与实验结果进行了比较。最后将RTD数据与苯酚降解动力学模型一起应用,以预测此类反应的表观速率系数。

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