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Charge characteristics (surface charge vs. zeta potential) of membrane surfaces to assess the salt rejection behavior of nanofiltration membranes

机译:膜表面的电荷特性(表面电荷与Zeta电位)评估纳滤膜的盐排斥行为

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摘要

The charge characteristics (i.e., surface charge and zeta potential) of two different nanofiltration (NF) membranes were characterized by the potentiometric titration and electrophoresis methods under various experimental conditions, i.e., pH, ionic strength, ionic species, and organic fouled membranes to clarify the salt rejection mechanism of the NF membranes. The both charge characteristics of the NF membranes clearly represented the variation in the salt rejection behavior at different ionic strengths and for electrostatically fouled membranes. However, the surface charge of the NF membranes was independent of the ionic species and with the neutrally fouled membrane, whereas the zeta potential changed substantially with changes in the ionic species and the neutrally fouled membrane. Therefore, the variation in salt rejection behavior for different ionic species and with a neutrally fouled membrane was better described by the zeta potential values, which reflected the ion transport properties (i.e., ion valency and diffusivity) affecting the electrophoretic and electroosmotic flows at the shear plane of the membranes. These results indicate the electrophoresis method is considered as a promising tool for predicting the electrostatic transport of various ions at the shear plane of the membrane surfaces, intimately associated with the salt rejection behavior in the NF membrane processes.
机译:通过各种实验条件下的电位滴定和电泳方法,即pH,离子强度,离子物质和有机污垢膜,表征两种不同纳米滤膜(NF)膜的电荷特性(即表面电荷和ζ电位)的特征在于,以澄清NF膜的盐排斥机制。 NF膜的两次电荷特性明显地表示不同离子强度的盐排斥行为的变化和静电污垢的膜。然而,NF膜的表面电荷与离子物质和中性污垢膜无关,而Zeta电位基本上随离子物质和中性污垢膜的变化而变化。因此,通过Zeta电位值更好地描述不同离子物质和中性污垢膜的盐排斥行为的变化,这反映了影响剪切处的电泳和电渗流的离子输送性质(即离子价和扩散性)膜的平面。这些结果表明电泳方法被认为是用于预测膜表面的剪切平面上各种离子的静电传输的有前途的工具,与NF膜过程中的盐抑制行为密切相关。

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