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Chlorine resistant binary complexed NaAlg/PVA composite membrane for nanofiltration

机译:用于纳滤的耐氯二元复合NaAlg / PVA复合膜

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摘要

A composite nanofiltration (NF) membrane was prepared by coating a thin layer of sodium alginate (NaAlg)-polyvinyl alcohol (PVA) blend on the polysulfone support, then cross linked in two steps with calcium chloride and glutaraldehyde respectively. Structural and morphological characteristics of the NF composite membranes were determined by FT-1R and SEM. The performance of the membrane was evaluated in nanofiltration studies, and the effect on performance of experimental parameters including the NaAlg/PVA blend ratio, cross linking reaction time, membrane thickness and operating time was investigated. The permeance properties of the membrane were determined using 2000 ppm solutions of NaCl and MgSO4. A water flux of 80 L/m~2.h with 46% salt rejection was observed for the monovalent salt solution. However, a decrease in flux to 68 L/m~2h with an increase in salt rejection to 80% was noticed for the divalent ions. The chlorine tolerance of the composite membrane was tested by exposing it to the NaOCl solution for a different time span. A slight change in water flux and salt rejection was observed, revealing a good stability of the membrane in the chlorine retaining environment. Hence, the prepared binary cross-linked NaAlg/PVA composite membrane can successfully be utilized for the purpose of nanofiltration and/or desalination.
机译:通过在聚砜载体上涂覆海藻酸钠(NaAlg)-聚乙烯醇(PVA)混合物的薄层,然后分别用氯化钙和戊二醛分两步交联来制备复合纳米过滤(NF)膜。通过FT-1R和SEM确定了NF复合膜的结构和形态特征。在纳滤研究中评估了膜的性能,并研究了其对实验参数的性能的影响,这些参数包括NaAlg / PVA共混比,交联反应时间,膜厚度和操作时间。使用2000 ppm NaCl和MgSO4溶液测定膜的渗透性能。对于单价盐溶液,观察到水通量为80 L / m〜2.h,除盐率为46%。然而,对于二价离子,通量降低至68 L / m〜2h,而盐分截留率提高至80%。通过将复合膜暴露在NaOCl溶液中不同的时间段来测试其耐氯性。观察到水通量和脱盐率略有变化,表明膜在氯气保持环境中具有良好的稳定性。因此,所制备的二元交联NaAlg / PVA复合膜可以成功地用于纳滤和/或脱盐的目的。

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