Numerical Simulation of Nonlinear and Non-Isothermal Liquid Chromatography for Studying Thermal Variations in Columns Packed with Core-Shell Particles

A. Ahmad, N. F. Okechi, David U. Uche, Abdulwasiu O. Salaudeen
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Abstract

A high-resolution flux-limiting semi-discrete finite volume scheme (HR-FVS) is applied in this study to numerically approximate the nonlinear and non-isothermal flow of one-dimensional lumped kinetic model (1D-LKM), for a fixed-bed column loaded with core-shell particles. The developed model comprise a system of convection-dominated partial differential for mass and energy balances in the mobile phases coupled with differential equation and algebraic equation in the stationary phase. The solution of the model equations is obtained by utilizing a HR-FVS, the scheme has second-order accuracy even on the grid coarse and its explicit nature has the potential to resolve the arisen sharp discontinuities in the solution profiles. A second-order total variation diminishing (TVD) Runge-Kutta technique is used to solve the system of ODEs in time. Several forms of a single-solute mixture are produced to investigate the influences of the fractions of core radius on thermal waves and concentration fronts. Moreover, a particular criterion is introduced for analyzing the performance of the underlying process and to identify the optimal parameter values of the fraction of core radius.
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非线性非等温液相色谱法研究核壳颗粒填充柱中热变化的数值模拟
本文采用高分辨率限流半离散有限体积格式(HR-FVS),对含核壳颗粒的固定床柱的一维集总动力学模型(1D-LKM)的非线性非等温流动进行了数值模拟。所建立的模型包括流动相中以对流为主的质量和能量平衡偏微分系统,以及固定相中的微分方程和代数方程。利用HR-FVS获得模型方程的解,该方案即使在粗糙网格上也具有二阶精度,其显式性质具有解决解剖面中出现的尖锐不连续的潜力。采用二阶全变差递减(TVD)龙格-库塔技术及时求解ode系统。制备了几种形式的单溶质混合物,以研究岩心半径分数对热波和浓度锋的影响。此外,还引入了一个特定的准则来分析底层过程的性能,并确定岩心半径分数的最佳参数值。
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