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Characterization and Performance of LbL-Coated Multibore Membranes: Zeta Potential MWCO Permeability and Sulfate Rejection

机译:LBL涂层多联机膜的表征和性能:Zeta电位MWCO渗透性和硫酸盐排斥

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摘要

The characterization of membranes is suitable to investigate changes in the membrane properties caused by Layer-by-Layer (LbL) modification. Besides permeability, rejection, and molecular-weight cut-off (MWCO), which give information about the modification of the separation behaviour of the membrane, the zeta potential is capable of describing the surface charge of the membrane and its variation impacted by the properties of the polyelectrolyte multilayers (PEM). In this study, a new method for zeta potential measurement of hollow fibre membranes with several capillaries was developed and further investigations on the LbL modification of such membranes were performed. The results showed that an LbL coating with 8 DL PDADMAC/PSS led to a significant increase in the membrane charge of more than 20 mV. The coating with a different number of polyelectrolyte (PE) layers showed a zig-zag behaviour, comparable to data from flat sheet studies. However, in contrast to most flat sheet membranes, the charge curve assumes a totally negative trajectory at neutral pH. Further experiments on the MWCO of the LbL-modified membrane showed a reduction in the pore diameter from approx. 20 nm to less than 2 nm, reaching the range of nanofiltration membranes. With information on both the zeta potential and the MWCO, it was found that the rejection mechanism in LbL-modified multibore membranes is a complex interplay between the sieving effect due to reduction in the pore diameter and the repulsion effect of the charged membrane.
机译:膜的表征适用于研究由层层(LBL)改性引起的膜特性的变化。除了渗透性,排斥和分子量截止(MWCO)之外,提供有关膜的分离行为的修饰的信息,Zeta电位能够描述膜的表面电荷及其变异由性质影响聚电解质多层(PEM)。在该研究中,开发了一种新的具有几毛细管的中空纤维膜的Zeta电位测量方法,并进行了对这种膜的LBL改性的进一步研究。结果表明,具有8DL PDADMAC / PSS的LBL涂层导致膜电荷大于20mV的显着增加。具有不同数量的聚电解质(PE)层的涂层显示出曲折的行为,与来自平板研究的数据相当。然而,与大多数平板膜相比,电荷曲线在中性pH下呈现完全负轨迹。在LBL改性膜的MWCO上进一步实验显示孔径的降低。 20nm至小于2nm,达到纳米滤膜范围。利用关于Zeta电位和MWCO的信息,发现LBL改性多摩膜中的排斥机制是由于孔径的降低和带电膜的排斥效应而导致的筛分效应与带电膜的排斥效应之间的复杂相互作用。

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