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Study of Gas-Liquid Volumetric Mass Transfer in Bubble Column Reactors Using Axial Dispersion Model

机译:使用轴分散模型研究气泡柱反应器中气液体积传质的研究

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The volumetric gas-liquid mass transfer coefficient, kla, in bubble column reactors was estimated experimentally. Optical oxygen probes were implemented to measure the dissolved oxygen concentration in the liquid phase. This work uses axial dispersion model (ADM) to describe the mixing of both liquid and gas phases and to regress the value of mass transfer coefficient. The result of the kla coefficient using ADM is compared with that from using simple CSTR assumptions. The comparison demonstrates that using ADM obtains better fitting to the experimental data, and the ADM achieves consistent results over the whole range of axial sampling positions along the reactor. CSTR model could under-estimate the kla values by up to 25% at given conditions. This work shows mixing behavior of bubble column reactors has significant deviation from CSTR which needs to be considered in mass transfer study. Effects of gas velocity, operating pressure, and reactor diameter on mass transfer were investigated.
机译:实验估计气泡柱反应器中的体积气体传质系数KLA。实施光学氧气探针以测量液相中的溶解氧浓度。这项工作采用轴向分散模型(ADM)来描述液体和气体相的混合,并重新转移传质系数的值。使用ADM的KLA系数的结果与使用简单的CSTR假设进行比较。比较表明,使用ADM获得更好地拟合到实验数据,并且ADM实现一致地在沿反应器沿着反应器的整个轴向采样位置的结果。 CSTR模型可以在给定条件下估计高达25%的KLA值。该工作表明气泡柱反应器的混合行为与在传统转移研究中需要考虑的CSTR具有显着偏差。研究了气体速度,工作压力和反应器直径对传质的影响。

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