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Assessment of CFD Euler-Euler method for trickle-bed reactor modelling in the catalytic wet oxidation of phenolic wastewaters

机译:CFD Euler-Euler方法在滴滤床反应器建模中对含酚废水的催化湿式氧化的评估

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摘要

Trickle-bed reactors (TBRs) are envisaged as a breakthrough technology in industrial wastewater treatment plants. According to the literature, the generous research in environmental reaction engineering has indicated that scale-up of TBR is erroneous if one considers isothermal operation and uses either a pseudo-homogeneous or a heterogeneous model with plug flow for gas and liquid phases. Even though axial dispersion model may account for liquid distribution non-uniformity, the reaction parameters are strongly dependent on the reactor fluid dynamics.In our case study, we develop an Eulerian CFD (computational fluid dynamics) framework based on empirical interphase coupling parameters in the momentum balance equation. After the hydrodynamic validation, the catalytic wet oxidation of phenolic wastewaters was taken as an example to evaluate axial and radial profiles for the total organic carbon depletion and temperature along the packed bed. The theoretical calculations were compared against experimental data taken from a trickle-bed reactor pilot plant. The Eulerian computations have shown promising results on how fluid dynamics can be correlated with chemical reaction, namely on the prediction of total organic carbon conversions attained at different temperatures.
机译:流床反应器(TBR)被设想为工业废水处理厂中的一项突破性技术。根据文献,在环境反应工程中的大量研究表明,如果人们考虑等温运行并且对气相和液相使用拟均相或非均相模型和活塞流,则TBR的放大是错误的。即使轴向弥散模型可以解决液体分布不均匀的问题,但反应参数仍强烈依赖于反应堆的流体动力学。动量平衡方程。在进行流体动力学验证之后,以酚类废水的催化湿式氧化为例,评估了沿填充床的总有机碳消耗和温度的轴向和径向分布。将理论计算与滴流床反应堆中试装置的实验数据进行了比较。欧拉计算显示出关于流体动力学如何与化学反应相关的有希望的结果,即在不同温度下获得的总有机碳转化率的预测。

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