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Study of mass transfer correlations for intensified absorbers in post-combustion CO2 capture based on chemical absorption

机译:基于化学吸收的燃烧后CO2捕集强化吸收剂的传质关系研究

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摘要

Process intensification (PI) technologies such as rotating packed beds (RPBs) could reduce the size of absorber usedudin post-combustion CO2 capture (PCC) based on chemical absorption processes by about 12 times compared toudabsorber with standard packed beds. However, mass transfer correlations for predicting effective interfacial area andudliquid film mass transfer coefficient in RPBs are limited in literature and their prediction accuracy against experimentaluddata is yet to be compared. This need is addressed in this study by evaluating the performances of different correlationsudthrough comparison with experimental data. Of all the correlations assessed, it is found that Lou et al. [1] and Tungudand Mah [2] correlations give reliable estimate of the effective interfacial area and liquid film mass transferudcoefficients respectively.
机译:与标准填充床的吸附式吸收器相比,诸如旋转填充床(RPB)等工艺强化(PI)技术可以将基于化学吸收过程的吸收器 udin燃烧后二氧化碳捕集(PCC)的尺寸减小约12倍。然而,用于预测RPB中有效界面面积和液膜传质系数的传质相关性在文献中是有限的,并且它们相对于实验 uddata的预测准确性尚待比较。通过与实验数据比较评估不同相关的性能 ud,可以满足本研究的需求。在评估的所有相关性中,发现Lou等。 [1]和Tung udand Mah [2]的相关性分别给出了有效界面面积和液膜传质 udco系数的可靠估计。

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  • 作者

    Oko E.; Wang M.; Ramshaw C.;

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  • 年度 2016
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  • 正文语种 en
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