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Preparation of lignosulfonate‐based nanofiltration membranes with improved water desalination performance

机译:基于木质素磺酸盐的纳米滤膜具有改进的水脱盐性能

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摘要

Pulping and papermaking generate large amounts of waste in the form of lignosulfonates which have limited valorized applications so far. Herein, we report a novel lignosulfonate‐based nanofiltration membrane, prepared by using polyethylenimine (PEI) and sodium lignosulfonate (SL) via a layer‐by‐layer (LbL) self‐assembly. As a low‐cost and renewable natural polyelectrolyte, SL is selected to replace the synthetic polyelectrolyte commonly used in the conventional LbL fabrication for composite membranes. The prepared LbL (PEI/SL)7 membranes were crosslinked by glutaraldehyde (GA) to obtain (PEI/SL)7‐GA membranes with compact selective layer. We characterized (PEI/SL)7 and (PEI/SL)7‐GA membranes to study the chemical compositions, morphologies, and surface hydrophilicity. To improve the nanofiltration performances of the (PEI/SL)7‐GA membranes for water desalination, we investigated the effects of the crosslinking time, GA concentration and the NaCl supporting electrolyte on membrane structure and performance. The optimized (PEI/SL)7‐GA membrane exhibited a permeating flux up to 39.6 L/(m2·h) and a rejection of 91.7% for the MgSO4 aqueous solution 2.0 g/L concentration, showing its promising potential for water desalination. This study provides a new approach to applying the underdeveloped lignin‐based biomass as green membrane materials for water treatment.
机译:制浆和造纸以迄今为止,含木质素磺酸盐的形式产生大量废物。在此,我们通过使用逐层(LBL)自组装,通过使用聚乙烯亚胺(PEI)和木质素磺酸钠(SL)制备的新型硫氧吡酰基纳滤膜。作为一种低成本和可再生的天然电解质,选择SL以替代常规LBL制造中常用的合成聚电解质以进行复合膜。制备的LBL(PEI / SL)7膜通过戊二醛(GA)交联,得到(PEI / SL)7-GA膜,具有紧凑的选择层。我们表征(PEI / SL)7和(PEI / SL)7-GA膜,以研究化学组成,形态和表面亲水性。为了改善水脱盐的(PEI / SL)7-GA膜的纳米滤膜性能,研究了交联时间,GA浓度和NaCl支持电解质对膜结构和性能的影响。优化的(PEI / SL)7-GA膜表现出高达39.6升/(M2·H)的渗透通量,并抑制MgSO 4水溶液2.0g / L浓度的91.7%,显示出其对水脱盐的有希望的电位。该研究提供了一种新方法,将欠培养的木质素基生物量应用于用于水处理的绿膜材料。

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