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Derivation of adsorption parameters for nanofiltration membranes using a 1-pK Basic Stern model

机译:使用1-PK基本船尾模型衍生纳米滤膜的吸附参数

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The ion retention and flux of nanofiltration (NF) membranes are to a large extent determined by the membrane surface charge. This surface charge is in turn strongly influenced by adsorption of ions from the solution onto the membrane material. A 1 -pK adsorption model with a Basic Stern electrostatic double layer model is used to describe ion adsorption, and the sensitivity of this model for various parameters is discussed. From a non-linear regression analysis of literature data regarding the surface charge and the zeta-potential, adsorption parameters for the 1 pK model are obtained for sodium chloride on γ-alumina.The 1-pK Basic Stern model could predict the surface charge well, except for the highest concentration of 1000 mol/m~3. Reasonable agreement is found between the measured zeta-potentials and the model predictions.
机译:纳米滤膜(NF)膜的离子保持和通量在很大程度上由膜表面电荷确定。该表面电荷又受到离子从溶液中吸附到膜材料上的影响。使用基本船尾静电双层模型的1 -PK吸附模型用于描述离子吸附,并且讨论了该模型对各种参数的灵敏度。从关于表面电荷和ζ-潜力的文献数据的非线性回归分析,为γ-氧化铝的氯化钠获得1 PK模型的吸附参数。1-PK基本船尾模型可以预测表面充电,除了最高浓度为1000 mol / m〜3。在测量的Zeta电位和模型预测之间发现了合理的协议。

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