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Three-channel capillary nanofiltration membrane with quaternary ammonium incorporated for efficient heavy metals removal

机译:三通道毛细血管纳滤膜,具有季铵,其掺入有效的重金属去除

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High-performance nanofiltration (NF) membranes have profound implications for water purification. Here, we reported a novelty polyamide NF membrane through introducing bis (2-hydroxyethyl) dimethyl-ammonium chloride (BHDA) in interfacial polymerization (IP) process on three-channel substrate membrane. This new monomer bearing abundant quaternary ammonium (N+) and hydroxyl could participate in the reaction between piperazine (PIP) and trimesoyl chloride (TMC). Then, not only was positive charge introduced into the NF membrane, but the hydrophilic of the resultant NF membrane was also significantly improved. Thus, the as-prepared PIP/BHDA-TMC (MPQ) membrane exhibited enhanced pure water flux (12.9 L.m(-2).h(-1).bar(-1)) which is 2.4 times as high as that of the PIP-TMC (MP) membrane, coupled with the salt rejection sequence as MgSO4 (93.46%) > Na2SO4 (91.61%) > MgCl2 (88.15%) > NaCl (22.03%). Meanwhile, MPQ exhibited a promising separation performance to various heavy metal salts (96.43% CuSO4, 96.16% ZnSO4, 91.69% Cu(NO3)(2), 89.69% ZnCl2, 88.37% Pb(NO3)(2)). The stability of MPQ was tested with simulated wastewater, and the results illustrated that it has a potential applicability for heavy metals removal.
机译:高性能纳米滤膜(NF)膜对净水有深远的影响。在这里,我们通过在三通道底物膜上引入双(2-羟乙基)二甲基 - 氯化铵(BHDA)通过在三通道底物膜上引入新的聚酰胺NF膜。该新的单体轴承丰富的季铵(N +)和羟基可以参与哌嗪(PIP)和Trimesoyl氯(TMC)之间的反应。然后,不仅引入NF膜中的正电荷,而且还显着改善了所得NF膜的亲水性。因此,AS制备的PIP / BHDA-TMC(MPQ)膜表现出增强的纯水通量(12.9 LM(-2).h(-1).BAR(-1)),其高度为2.4倍PIP-TMC(MP)膜,与MgSO 4(93.46%)> Na 2 SO 4(91.61%)> MgCl 2(88.15%)> NaCl(22.03%)偶联。同时,MPQ向各种重金属盐(96.43%CusO4,96.16%ZnSO 4,91.69%Cu(2),89.69%ZnCl2,88.37%Pb(2))上表现出有望的分离性能。用模拟废水测试MPQ的稳定性,结果表明它具有重质金属的潜在适用性。

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