首页> 外文期刊>Journal of Membrane Science >Permeation and tangential flow streaming potential measurements for electrokinetic characterization of track-etched microfiltration membranes
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Permeation and tangential flow streaming potential measurements for electrokinetic characterization of track-etched microfiltration membranes

机译:渗透和切向流流动电势测量,用于电痕刻蚀微滤膜的电动特性

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摘要

Four Nuclepore microfiltration membranes having different pore diameters were electrokinetically characterized by streaming potential measurements. Two different modes were applied. In the permeation flow mode the testing solution is directed perpendicularly to the membrane; in the other case the solution streams tangentially across the membrane. The parameters for the investigations were pH and the concentration of the KCl solution. The aim was to investigate the influence of pore radii and surface conductivity upon the streaming potential that was simply converted into the zeta potential by using the Helmholtz-Smoluchowski equati on. In the case of the tangential flow m ode, a pore influence is out of question. Also the surface conductivity can be neglected in this fiow mode at an electrolyte concentration of 10~-2 M, but at a l0~-3 M concentration the surface conductance contributes about 15/100 to the overall conductivity. Mainly the carboxylic groups of the polymeric material are responsible for surface conductivity. Under the permeation flow condition the influence of the pore dimensions upon the zeta potential is remarkable. This is due to surface conductivity and overlapping double layers. Additionally, hydrophobicity is involved too, since it increases when pore dimensions decrease depending on the amount of polyvinylpyrrolidone that is used by the manufacturer for improving the water uptake of the membranes.
机译:通过流式电势测量对四个具有不同孔径的Nuclepore微滤膜进行电动表征。应用了两种不同的模式。在渗透流模式下,测试溶液垂直于膜引导;在另一种情况下,溶液切向流过膜。用于研究的参数是pH和KCl溶液的浓度。目的是研究孔半径和表面电导率对流动电势的影响,该流动电势通过使用亥姆霍兹-斯莫卢霍夫斯基方程简单地转换为ζ电势。在切向流法的情况下,孔的影响是毫无疑问的。同样,在这种流动模式下,当电解质浓度为10〜-2 M时,表面电导率可以忽略不计,但是当浓度为10〜-3 M时,表面电导率对总电导率的贡献约为15/100。聚合材料的羧基主要负责表面电导率。在渗透流动条件下,孔尺寸对ζ电势的影响是显着的。这是由于表面电导率和重叠的双层所致。另外,还涉及疏水性,因为当孔尺寸减小时,疏水性增加,疏水性取决于制造商用于改善膜的吸水率的聚乙烯吡咯烷酮的量。

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