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Computational simulations of breakthrough curves in cAMP adsorption processes in ion-exchange bed under hydrodynamic flow

机译:流体动力流作用下离子交换床中cAMP吸附过程中穿透曲线的计算模拟

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摘要

Computational and theoretical modeling has become an important tool for the characterization, development and validation of packed beds. Relevant breakthrough curves would provide much valuable information on designing a fixed bed adsorption process in field applications. In this study, the hydrodynamic properties involved in the Navier-Stokes flow equation, such as velocity, pressure and permeability, in a packed bed were investigated. A two dimensional (2D) model based on the convection/diffusion approach theory and the Nernst-Planck model was adopted to describe the breakthrough curves of adenosine 3',5'-cyclic monophosphate (cAMP) adsorption onto a porous resin adsorbent, SD-13, from an aqueous solution. The relevant ordinary partial equations were solved in COMSOL Multiphysics Software friendly and efficiently. Column experiments were performed at different conditions to verify the model, and the results indicated that the model describes well the breakthrough curves. The behaviors of exchanged counter-ion (CI~(-)) in cAMP adsorption experiments were also predicted well.
机译:计算和理论建模已成为表征填充床,开发和验证填充床的重要工具。相关的突破曲线将为设计现场应用中的固定床吸附工艺提供许多有价值的信息。在这项研究中,研究了填充床中Navier-Stokes流动方程中涉及的流体动力学特性,例如速度,压力和渗透率。采用基于对流/扩散方法理论和Nernst-Planck模型的二维(2D)模型来描述3',5'-环磷酸单腺苷(cAMP)吸附到多孔树脂吸附剂SD-上的穿透曲线13,由水溶液制成。在COMSOL Multiphysics Software中友好而有效地解决了相关的普通偏方程。在不同条件下进行了柱实验以验证该模型,结果表明该模型很好地描述了穿透曲线。在cAMP吸附实验中交换离子(CI〜(-))的行为也得到了很好的预测。

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