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首页> 外文期刊>Separation and Purification Technology >Understanding the impact of poly(allylamine) plasma grafting on the filtration performances of a commercial polymeric membrane
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Understanding the impact of poly(allylamine) plasma grafting on the filtration performances of a commercial polymeric membrane

机译:了解聚(烯丙胺)等离子体移植对商业聚合物膜过滤性能的影响

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Commercial membranes often exhibit difficulties in rejecting specific ionic species, and especially multivalent cations, due to their usual negative charge. To face this drawback, it is proposed here to functionalize the membrane surface by allylamine plasma polymerization. The impact of this modification on both permeation flux and ion rejection is investigated for single salt solutions and ion mixtures. It is shown that the membrane behaves like a positive membrane from the point of view of cation rejection but the negative charge (and the corresponding electrical field) inside pores leads to high rejection of divalent anions like a negative membrane. This allows a high selectivity between divalent and monovalent ions irrespective of their sign. However, in the cases of ionic mixtures, the selectivity between cations and anions is reduced as the grafting duration increases. This outstanding impact on performances was obtained although the membrane surface is perhaps partially covered by plasma poly(allylamine). Indeed, the overall apparent zeta-potential was found to be still slightly negative or slightly positive for 5 and 10 min of polymerization, respectively. Consequently, a definitive conclusion about the mechanisms governing the impact of grafting on rejection cannot still be drawn and it requires an in-depth characterization of the membrane before and after modification so as to consider the changes in physicochemical properties induced by poly(allylamine) grafting.
机译:由于其通常的负电荷,商业膜通常表现出拒绝特定离子物质,特别是多价阳离子的困难。为了面对这一缺点,提出了通过烯丙胺血浆聚合来官能化膜表面。研究了对单一盐溶液和离子混合物进行了对渗透通量和离子排斥反应的影响。结果表明,从阳离子抑制的角度来看,膜的表现类似的是阳性膜,但孔内的负电荷(和相应的电场)导致高拒绝负膜的二价阴离子。这允许二价和单价离子之间的高选择性,而不管其标志如何。然而,在离子混合物的情况下,随着接枝持续时间的增加,阳离子和阴离子之间的选择性降低。尽管膜表面可能部分地被血浆聚(allylamine)覆盖,但获得这种对性能的显着影响。实际上,发现整体表观Zeta潜力分别仍然略有阴性或略微阳性,分别为5和10分钟的聚合。因此,关于控制嫁接的抗排斥反应的影响的最终结论仍然不能被吸引,并且在修饰之前和之后需要对膜进行深入表征,以考虑聚(allylamine)嫁接诱导的物理化学特性的变化。

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