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首页> 外文期刊>Polymer engineering and science >Monitoring the Salt Stability of Layer‐by‐Layer Self‐Assembled Films From Polyelectrolyte Blends by Quartz Crystal Microbalance‐Dissipation and Their Ion Separation Performances
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Monitoring the Salt Stability of Layer‐by‐Layer Self‐Assembled Films From Polyelectrolyte Blends by Quartz Crystal Microbalance‐Dissipation and Their Ion Separation Performances

机译:通过石英晶体微稳定耗散和离子分离性能监测来自聚电解质共混物的逐层自组装膜的盐稳定性

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> Our study is concerned with the development of a novel type of layer‐by‐layer (LbL) self‐assembled membrane from a single cationic polyelectrolyte (PE) and blended anionic PEs. Their synthetic seawater stability is investigated as a function of PE type and blend ratios using quartz crystal microbalance‐dissipation (QCM‐D). These materials adsorbed into multilayers with significant viscoelasticity. Poly(allylamine hydrochloride) (PAH) and poly(vinylamine hydrochloride) (PVA) based LbL blend films did not show any multilayer decomposition with the addition of synthetic seawater regardless of blend ratio while chitosan based multilayers disintegrated. The flux of PVA based blend membrane to water with 1,000?ppm NaCl was found to be 6.7 L/m 2 .h at 40?bar and the flux properties of the membranes were highly dependent on both the thickness and hydrophilicity of multilayers. Ion rejection can be controlled with the charge of the top layer consistent with a Donnan exclusion approach. Sodium ion rejection of 60.5 layered LbL blend membrane was 98.4% at 40?bar and it was determined that sodium ion rejection improved 110.7% compared to a commercial nanofiltration membrane. POLYM. ENG. SCI., 60:1006–1018, 2020. ? 2020 Society of Plastics Engineers
机译: > 我们的研究涉及从单个阳离子聚电解质(PE)和混合的阴离子PE的一种新型层逐层(LBL)自组装膜的开发。使用石英晶体微稳定 - 耗散(QCM-D)作为PE型和混合比的函数来研究其合成海水稳定性。这些材料吸附成具有显着粘弹性的多层。聚(盐酸氨基丙胺)(PAH)和聚(盐酸亚氨基氨基氨基)(PVA)的LBL共混膜未在添加合成海水中显示任何多层分解,无论混合比如何,壳聚糖的多层崩解。发现PVA的混合物膜与1000℃的水的通量为6.7L / m 2 .ht 40?棒和膜的磁通性质高度依赖于多层的厚度和亲水性。可以通过与多瑙排除方法一致的顶层的电荷控制离子抑制。钠离子抑制60.5层LBL共混膜为40μl10≤10×14%,与商业纳米过滤膜相比,钠离子排斥率为110.7%。聚合物。 eng。 SCI。,60:1006-1018,2020。? 2020塑料工程师协会

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