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Multi-scale modelling of OSN batch concentration with spiral-wound membrane modules using OSN Designer

机译:使用OsN Designer对螺旋缠绕膜组件的OsN批量浓度进行多尺度建模

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摘要

Three commercial spiral-wound membrane modules of different sizes, from 1.8??? ?? 12??? to 4.0??? ?? 40???, are used to concentrate a solution of sucrose octaacetate in ethyl acetate under different operating conditions. A mathematical model to describe the batch concentration process is developed, based on a combination of the classical solution diffusion membrane transport model and the film theory, to account for the mass transfer effects. The model was implemented using the ???OSN Designer??? software tool. The membrane transport model parameters as well as all parameters in the pressure drop and mass transfer correlations for the spiral-wound modules were obtained from regression on a limited number of experimental data at steady state conditions. Excellent agreement was found between the experimental and multi-scale modelling performance data under various operating conditions. The results illustrate that the performance of a large scale batch concentration process with spiral-wound membrane modules can be predicted based on laboratory crossflow flat sheet test data when the fluid dynamics and mass transfer characteristics in the module, and the necessary channel geometry are known. In addition, the effects of concentration polarisation, pressure drop through feed and permeate channels, and thermodynamic non-ideality of the solution at large scale batch concentration are also investigated.
机译:三个不同尺寸的商用螺旋缠绕膜组件,从1.8开始??? ?? 12 ???到4.0 ??? ??在不同的操作条件下,用40μl浓缩蔗糖八乙酸蔗糖酯在乙酸乙酯中的溶液。基于经典溶液扩散膜传输模型和膜理论的结合,建立了描述间歇浓缩过程的数学模型,以说明传质效应。该模型是使用“ OSN Designer”实现的。软件工具。膜运输模型参数以及螺旋缠绕模块的压降和传质相关性中的所有参数是通过在稳态条件下有限数量的实验数据上进行回归获得的。在各种操作条件下,实验和多尺度建模性能数据之间发现了极好的一致性。结果表明,当已知模块中的流体动力学和传质特性以及必要的通道几何形状时,可以基于实验室错流平板测试数据来预测采用螺旋缠绕膜模块的大规模批量浓缩过程的性能。此外,还研究了浓差极化,通过进料和渗透通道的压降以及在大批量浓缩时溶液的热力学非理想性的影响。

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