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Dynamic modelling of Kuehni liquid extraction columns using the sectional quadrature method of moments (SQMOM)

机译:使用截面矩量法(SQMOM)对Kuehni液体萃取塔进行动态建模

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In this work, the Sectional Quadrature Method Of Moments (SQMOM) is extended to a one-dimensional physical spatial domain and resolved using the finite volume method. To close the mathematical model, the required quadrature nodes and weights are calculated using the analytical solution based on the Two Unequal Weights Quadrature (TUEWQ) formula derived by Attarakih et al. [Attarakih, M.. Drumm, C., & Bart, H.-J., (2009), Solution of the population balance equation using the Sectional Quadrature Method of Moments (SQMOM). Chemical Engineering Science, 64, 742-752). By applying the finite volume method to the spatial domain, we end up with a semi-discreet ordinary differential equation system which is solved using the MATLAB standard ODE solvers (ode45). As a case study, the SQMOM is used to investigate the dynamic behavior of a Kiihni DN150 liquid-liquid extraction column. As an independent validation step, the SQMOM prediction is compared with the PPBLab software which utilizes the extended fixed pivot technique as a built-in population balance model solver. Furthermore, the SQMOM is validated using the available dynamic experimental data from a Kuehni liquid extraction column using water-acetone-toluene chemical test system. The dynamic analyses of the Kuehni column show very interesting features concerning the coupled column hydrodynamics and mass transfer and the droplet breakage and coalescence as well.
机译:在这项工作中,截面矩量法(SQMOM)扩展到一维物理空间域,并使用有限体积法进行求解。为了关闭数学模型,需要使用基于Attarakih等人得出的两个不等权重正交(TUEWQ)公式的解析解来计算所需的正交节点和权重。 [Attarakih,M .. Drumm,C.和Bart,H.-J。,(2009年),使用矩量截面方法(SQMOM)求解人口平衡方程。化学工程科学,64,742-752)。通过将有限体积方法应用于空间域,我们得到了一个半离散的常微分方程系统,该系统使用MATLAB标准的ODE求解器(ode45)进行求解。作为案例研究,SQMOM用于研究Kiihni DN150液-液萃取塔的动力学行为。作为独立的验证步骤,将SQMOM预测与PPBLab软件进行比较,该软件利用扩展的固定枢轴技术作为内置人口平衡模型求解器。此外,使用水-丙酮-甲苯化学测试系统使用Kuehni液体萃取塔提供的动态实验数据验证了SQMOM。 Kuehni色谱柱的动力学分析显示出非常有趣的特性,涉及耦合色谱柱的流体动力学和传质以及液滴的破裂和聚结。

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