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Numerical Simulation of Reactive Pulsing Flow for the Catalytic Wet Oxidation in TBR Using a VOF Technique

机译:基于VOF技术的TBR催化湿式氧化反应性脉动流的数值模拟

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Guided by the intrinsic advantages of the dynamic nature of mass/heat transfer fluctuations in pulsing flow, here we performed volume-of-fluid (VOF) numerical simulations to evaluate how liquid flow modulations can improve the detoxification of liquid effluents by catalytic wet oxidation. First, prominent numerical parameters were optimized in terms of mesh aperture and time step. Second, the effect of oxidation temperature and the influence of gas and liquid flow rates have been investigated comparatively under different flow regimes. The VOF computations have correctly handled the experimental observations both in terms of the axial conversion and temperature. The increase of oxidation temperature was found to move the trickling and pulsing intersection point on the conversion toward the top of the trickle bed. Finally, in comparison with trickling flow regimes, these computed and experimental findings revealed a considerable improvement on the detoxification of organic matter highlighting the benefits of process intensification covered by the periodic liquid flow modulations.
机译:在脉冲流中传质/传热波动的动态特性的固有优势的指导下,我们在此进行了流体体积(VOF)数值模拟,以评估液体流量调节如何通过催化湿式氧化改善液体废水的解毒能力。首先,在网格孔径和时间步长方面优化了重要的数值参数。其次,在不同的流态下,比较研究了氧化温度的影响以及气体和液体流速的影响。 VOF计算已正确地处理了轴向转换和温度方面的实验观察。发现氧化温度的升高使转化时的滴流和脉冲交点朝滴流床的顶部移动。最后,与滴流状态相比,这些计算结果和实验结果表明,有机物的解毒性能有了显着改善,突出了周期性液体流量调节所涵盖的过程强化的好处。

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