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Bubble behaviors and CO2 absorption characteristics in nanoabsorbents

机译:纳米吸收剂中的泡沫行为和CO2吸收特性

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The objectives of this study are to present a comprehensive analysis of the CO2 bubble population dynamics and to investigate their effects on the CO2 absorption characteristics in nanoabsorbents (methanol with various concentrations of Al2O3 nanoparticles) with a rectangular bubble column. The population balance model (PBM) as a well-established method based on the Euler-Euler model is employed to compute the size distribution of bubbles and to account for the bubbles coalescence and breakage in multiphase flow. The coupled volume-of-fluid (VOF) method is selected to clearly capture the coalescence and breakup processes of successively rising bubbles. The results show that there is a significant influence of the leading bubble on the following one, including the increment of the velocity, the deformation of the bubble shape and the flow instability. It is also found that the critical distance at which the influences can be exerted is related to the bubble wake trailed by the leading bubble. Accordingly, five types of bubble wakes and their effects on the bubble behaviors such as the coalescence and breakup are categorized. Finally, by further analyzing the bubble behaviors in methanol with different volume fraction of Al2O3, it is found that the coalescence and breakup of bubbles are dominated by the bubble wake and enhanced by the eddy in local liquid. It is concluded that the higher concentration of nanoparticles is favorable to the bubble coalescence and breakup, which enhance the mass transfer performance by increasing the interfacial area.
机译:本研究的目的是对CO2泡沫群体动态进行全面分析,并研究其对纳米吸收剂(甲醇具有各种浓度Al2O3纳米颗粒)的CO 2吸收特性的影响,具有矩形气泡塔。人口平衡模型(PBM)作为基于Euler-euler模型的良好方法用于计算气泡的尺寸分布,并考虑气泡聚结和多相流破裂。选择耦合的流体体积(VOF)方法以清楚地捕获连续上升气泡的聚结和分离过程。结果表明,前导泡沫对以下泡沫存在显着影响,包括速度的增量,气泡形状的变形和流量不稳定性。还发现,可以施加影响的临界距离与前导泡沫落后的气泡刚。因此,将五种类型的气泡唤醒及其对诸如聚结和分离的气泡行为的影响。最后,通过进一步分析具有不同体积分数的Al 2 O 3中的甲醇中的泡沫行为,发现气泡的聚结和破碎由气泡唤醒以局部液体中的涡流增强。得出结论,纳米颗粒的较高浓度是有利于气泡聚结和分离,通过增加界面区域来提高质量传递性能。

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