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首页> 外文期刊>Membranes >Implementation of Spiegler–Kedem and Steric Hindrance Pore Models for Analyzing Nanofiltration Membrane Performance for Smart Water Production
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Implementation of Spiegler–Kedem and Steric Hindrance Pore Models for Analyzing Nanofiltration Membrane Performance for Smart Water Production

机译:Spiegler-Kedem和Steric阻碍孔模型的实现,用于分析纳滤膜在智能水生产中的性能

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A predictive model correlating the parameters in the mass transfer-based model Spiegler–Kedem to the pure water permeability is presented in this research, which helps to select porous polyamide membranes for enhanced oil recovery (EOR) applications. Using the experimentally obtained values of flux and rejection, the reflection coefficient σ and solute permeability P s have been estimated as the mass transfer-based model parameters for individual ions in seawater. The reflection coefficient and solute permeability determined were correlated with the pure water permeability of a membrane, which is related to the structural parameters of a membrane. The novelty of this research is the development of a model that consolidates the various complex mechanisms in the mass transfer of ions through the membrane to an empirical correlation for a given feed concentration and membrane type. These correlations were later used to predict ion rejections of any polyamide membrane with a known pure water permeability and flux with seawater as a feed that aids in the selection of suitable nanofiltration (NF) for smart water production.
机译:这项研究提出了一种预测模型,该模型将基于传质的模型Spiegler–Kedem中的参数与纯净水渗透率相关联,这有助于选择多孔聚酰胺膜以提高采油率(EOR)应用。使用实验获得的通量和截留值,已将反射系数σ和溶质渗透率P s估计为海水中各个离子的基于传质的模型参数。所确定的反射系数和溶质渗透率与膜的纯净水渗透率相关,后者与膜的结构参数有关。这项研究的新颖之处在于开发了一个模型,该模型将离子通过膜的质量转移过程中的各种复杂机制整合到了给定进料浓度和膜类型的经验关系中。这些相关性随后被用来预测具有纯净水渗透性和以海水为通量的通量的任何聚酰胺膜的离子排斥,这有助于选择合适的纳滤(NF)来生产智能水。

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