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首页> 外文期刊>RSC Advances >Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration
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Functionalized titanate nanotube-polyetherimide nanocomposite membrane for improved salt rejection under low pressure nanofiltration

机译:功能化的钛酸酯纳米管-聚醚酰亚胺纳米复合膜可改善低压纳滤下的脱盐率

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Functionalized titanate nanotubes were prepared using a facile and eco-friendly method. Nanofiltration membranes were fabricated via a simple phase inversion method. The neat and mixed matrix membrane (MMMs) was prepared using PEI as a polymeric material and nanomaterials such as TiO2 particles (TP), as-synthesized hydrogen trititanate nanotubes (pTNT), N-doped TiO2NT (N-TNT) and Cu-doped H2Ti3O7NT (Cu-TNT) served as additives. The crystal phase characterization revealed the anatase phase for TP, trititanate phase for pTNT, anatase-rutile mixed phase for N-TNT, Cu-TNT materials and similar observations were found with the MMMs. The morphology analysis of the neat PEI membrane exhibited a denser top layer and the beneath part of the membrane is tighter. Different from the neat PEI membrane nanocomposites of MMMs showed finger-like macrovoids towards the bottom of the membrane. The water uptake and hydrophilic character of the membranes are found in the following order: neat PEI > PEI/TP > PEI/pTNT > PEI/N-TNT > PEI/Cu-TNT. Interestingly, the salt rejection performance of monovalent (NaCl) and divalent (K2SO4 and CaCl2) ions in the single salt mixture were found to increase in the same order. The salt rejection performance of PEI/Cu-TNT was found in the decreasing order: K2SO4 (80%) < NaCl (75%) < CaCl2 (45%). The high performance of PEI/Cu-TNT in salt rejection and antifouling properties is ascribed to the tubular morphology, and the copper dopant results in the high hydrophilic character of the MMMs.
机译:使用简便且环保的方法制备功能化的钛酸酯纳米管。纳滤膜是通过简单的相转化方法制备的。使用PEI作为高分子材料和纳米材料,例如TiO2颗粒(TP),合成后的三钛酸氢纳米管(pTNT),N掺杂的TiO2NT(N-TNT)和Cu掺杂,制备了纯净的混合基质膜(MMM)。 H2Ti3O7NT(Cu-TNT)作为添加剂。晶体相表征揭示了TP的锐钛矿相,pTNT的三钛酸酯相,N-TNT的锐钛矿-金红石混合相,Cu-TNT材料,并且在MMM中发现了类似的观察结果。整齐的PEI膜的形态分析显示出致密的顶层,而膜的下部更紧密。 MMM与纯净的PEI膜纳米复合材料不同,其向膜的底部呈手指状的大孔。膜的吸水率和亲水性按以下顺序找到:纯PEI> PEI / TP> PEI / pTNT> PEI / N-TNT> PEI / Cu-TNT。有趣的是,发现单一盐混合物中一价(NaCl)和二价(K2SO4和CaCl2)离子的脱盐性能以相同的顺序增加。 PEI / Cu-TNT的除盐性能按降序排列:K2SO4(80%)

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