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Elaboration and charaterization of a new dialysis membrane by sorption of polyelectrolytes nanolayers

机译:聚电解质纳米层的吸附制备和表征新型透析膜

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This work aims at improving dialysis membrane selectivity and adaptability to the media to be treated by surface modifications using a polyelectrolyte.The poly(acrylonitrile-co-methallyl sulfonate)membrane,denoted AN69,has been modified by sorption of a cationic polyelectrolyte,the poly(allyldimethylammonium chloride),denoted PDADMA,on the membrane from its dilute solu-tion.The modified membrane was characterized by measuring the selectivity towards lithium ions(Li~+)in dialysis by measuring its transport number,the diffusional flow of few electrolytes,the hydraulic permeability and the streaming potential.The results showed that the membrane charge is reversed upon sorption of the PDADMA,indicating a drastic change in the membrane charge.The combination of Li~+transport numbers and streaming potential measurements show with a good evidence some modifications of the membrane on the surface and inside their pores;although the adsorption is reversible,it is so strong-due to multiple membrane-polyelectrolyte electrostatic interactions-that the layer is only removed by conditioning in NaCl aqueous solutions with ionic strength higher than 2 mol/L.The modified membrane appeared to be more selective toward ions Li~+,Na~+,K~+,Ca~(2+),and Mg~(2+).Finally,this kind of surface modification can be easily engaged in order to better adapt the membrane surface to its end use.Furthermore,in the present article,we have described in detail,for the first time,a new streaming potential apparatus especially designed for this study.
机译:这项工作旨在通过使用聚电解质进行表面改性来提高透析膜的选择性和对要处理的介质的适应性。通过吸附阳离子聚电解质对聚(丙烯腈-共-甲基烯丙基磺酸酯)膜进行改性。稀释的膜在膜上表示为PDADMA(氯化烯丙基二甲基氯化铵)。改性膜的特征是通过测量透析过程中对锂离子(Li〜+)的迁移率,少数电解质的扩散流,结果表明,PDADMA吸附后膜电荷逆转,表明膜电荷发生了剧烈变化。Li〜+传输数和流势测量值的结合表明了一些证据。膜在其表面和孔内部的修饰;尽管吸附是可逆的,但由于有多个膜而非常牢固rane-聚电解质静电相互作用-该层仅在离子强度高于2 mol / L的NaCl水溶液中进行处理才能去除。改性后的膜对离子Li〜+,Na〜+,K〜+的选择性更高。 Ca〜(2+)和Mg〜(2+)。最后,可以很容易地进行这种表面改性,以使膜表面更好地适应其最终用途。此外,在本文中,我们已经描述了详细介绍,这是首次专门为此研究设计的新型流式传输潜力设备。

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