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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Free energies of the ion equilibrium partition of KCl into nanofiltration membranes based on transmembrane electrical potential and rejection
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Free energies of the ion equilibrium partition of KCl into nanofiltration membranes based on transmembrane electrical potential and rejection

机译:基于跨膜电势和截留率的KCl离子平衡分配进入纳滤膜的自由能

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摘要

The free energies of ion equilibrium partition between an aqueous KCl solution and nanofiltration (NF) membranes were investigated on the basis of the relationship of the transmembrane electrical potential (TMEP) and rejection. The measurements of TMEP and rejection were performed for Filmtec NF membranes in KCl solutions over a wide range of salt concentrations (1-60 mol?m -3) and pH values (3-10) at the feed side, with pressure differences in the range 0.1-0.6 MPa. The reflection coefficient and transport number, which were used to obtain the distribution coefficients on basis of irreversible thermodynamics, were fitted by the two-layer model with consideration of the activity coefficient. Evidence for dielectric exclusion under the experimental conditions was obtained by analyzing the rejection of KCl at the isoelectric point. The free energies were calculated, and the contribution of the electrostatic effect, dielectric exclusion, steric hindrance, and activity coefficient on the ion partitioning is elucidated. It is clearly demonstrated that the dielectric exclusion plays a central role.
机译:基于跨膜电势(TMEP)与排阻的关系,研究了氯化钾水溶液与纳滤膜之间离子平衡分配的自由能。在进料侧的盐浓度(1-60 mol?m -3)和pH值(3-10)的宽范围内,对KCl溶液中的Filmtec NF膜进行TMEP和截留率的测量。范围0.1-0.6 MPa。两层模型考虑了活度系数,将反射系数和传输数用于基于不可逆热力学获得分布系数。通过分析在等电点的氯化钾的排斥,获得了在实验条件下的电介质排斥的证据。计算了自由能,并阐明了静电效应,介电排斥,空间位阻和活度系数对离子分配的贡献。清楚地表明,电介质排斥起着中心作用。

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