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Modeling of a pilot-scale trickle bed reactor for the catalytic oxidation of phenol

机译:苯酚催化氧化的中试滴流床反应器模型

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A mathematical model was developed to simulate the catalytic wet air oxidation (CWAO) of aqueous phenol in a trickle bed reactor (TBR). Both 'axial dispersion' and 'plug flow' models were proposed. 'Steady-state' mass transfers across different phases inside the reactor have all been considered in parallel with oxidation reactions catalyzed by heterogeneous copper catalyst supported on activated carbon. The changes in the concentrations of oxygen and phenol in various phases were thus depicted as a function of bed length. In order to validate the accuracy of the established TBR model, a series of experiments on phenol oxidation were performed on a pilot-scale TBR containing 5.61 of catalysts. The model was found able to give satisfactory predictions for nearly half of all the runs. The discrepancies between the experimental and modeling results were investigated for the less promising runs. It was also noticed that similar simulation results could be attained from 'axial dispersion' model against 'plug flow' model. Following the discussion on the changes of phenol and oxygen concentrations in the various phases, it is finally concluded that the performance of the TBR of this study depends largely on gas-to-liquid mass transfer process. Further suggestions with regards to reactor optimization are also proposed on the basis of experimental outcome.
机译:建立了数学模型,以模拟滴流床反应器(TBR)中含水苯酚的催化湿空气氧化(CWAO)。提出了“轴向色散”和“推流”模型。与在活性炭上负载的多相铜催化剂催化的氧化反应同时,都考虑了反应器内不同相之间的“稳态”传质。因此,将氧气和苯酚在各个相中的浓度变化描述为床长的函数。为了验证建立的TBR模型的准确性,在含5.61催化剂的中试规模TBR上进行了一系列苯酚氧化实验。发现该模型能够对所有运行的近一半给出令人满意的预测。对于不太理想的运行,研究了实验结果与模型结果之间的差异。还应注意的是,从“轴向扩散”模型与“推流”模型可以得到类似的仿真结果。在讨论了各相中苯酚和氧浓度的变化之后,最终得出的结论是,本研究的TBR的性能在很大程度上取决于气液传质过程。在实验结果的基础上,还提出了有关反应堆优化的进一步建议。

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