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Molecular Interactions and Modeling of Anionic Surfactant Effect on Oxygen Transfer in a Cylindrical Reactor

机译:圆柱表面反应器中阴离子表面活性剂的分子相互作用和氧转移模型

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In this work, effects of anionic surfactant on the oxygen transfer is investigated in a cylindrical reactor. For the first time, a systematic study in a wide surfactant concentration range, below and above the critical micellar concentration, is shown. A maximum reduction in the volumetric mass transfer coefficient (K_(L)ia ) was observed for a surfactant concentration of 0.07 mM, before the CMC. Results are discussed based on the molecular interactions among water, air bubbles, and surfactant molecules. To better understand the experimental findings, a mathematical model was developed based on the estimated volumetric mass transfer coefficient. Predictions agree very well with the experimental results and point to a maximum reduction of 41% in the K_(L)ia , regardless of the inlet airflow rate in the reactor. We believe that our model can be used to predict future experimental results. In addition, this work can also be useful to better design an aerobic system.
机译:在这项工作中,在圆柱形反应器中研究了阴离子表面活性剂对氧转移的影响。首次显示了在表面活性剂浓度范围内(低于和高于临界胶束浓度)的系统研究。在CMC之前,对于表面活性剂浓度为0.07mM,观察到体积传质系数(K_(L)a)的最大降低。基于水,气泡和表面活性剂分子之间的分子相互作用讨论了结果。为了更好地理解实验结果,基于估计的体积传质系数建立了数学模型。预测与实验结果非常吻合,并指出无论反应器中的进气流量如何,K_(L)a的最大降低量均为41%。我们相信我们的模型可以用来预测未来的实验结果。此外,这项工作对于更好地设计有氧系统也很有用。

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