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Modeling of a spiral-wound reverse osmosis process and parameter estimation

机译:螺旋缠绕反渗透过程的建模和参数估计

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Reverse osmosis system has been widely used for the separation of organic and non-organic pollutants present in wastewater. The main aim of this study is to develop a one dimensional steady state model based on the three-parameter Spiegler-Kedem methodology using the gPROMS software and validate it by assessing the performance of membrane rejection for the separation data of aqueous solutions of phenol under different concentrations and pressures. Considerations of the variance of pressure, flow rate, solute concentration, solvent and solute fluxes and mass transfer coefficient along the feed channel were included in the model. Furthermore, an optimization methodology for the gEST parameter estimation tool has been developed in the gPROMS and used with experimental data in order to estimate the best values of the separation membrane parameters and the friction parameter. The simulation results of this model have been corroborated by experimental data.
机译:反渗透系统已被广泛用于废水中有机和非有机污染物的分离。这项研究的主要目的是使用gPROMS软件基于三参数Spiegler-Kedem方法开发一维稳态模型,并通过评估膜截留性能对不同条件下苯酚水溶液分离数据的性能进行验证。浓度和压力。该模型考虑了沿进料通道的压力,流速,溶质浓度,溶剂和溶质通量以及传质系数的方差。此外,已经在gPROMS中开发了用于gEST参数估算工具的优化方法,并与实验数据一起使用,以估算分离膜参数和摩擦参数的最佳值。实验数据证实了该模型的仿真结果。

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