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Fabrication and characterization of novel composite nanofiltration membranes based on zwitterionic O-carboxymethyl chitosan

机译:基于两性离子O-羧甲基壳聚糖的新型复合纳滤膜的制备与表征

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摘要

A novel composite nanofiltration membrane was prepared from O-carboxymethyl chitosan (O-CMC) and epoxy chloropropane (ECH) through coating and chemical cross-linking reaction on the polyacrylonitrile (PAN) supporting layer. O-CMC was synthesized from chitosan and monochloroacetic acid. Chemical structures and compositions of O-CMC and NF membranes were characterized by infrared spectroscopy, and morphological structures were characterized by atomic force microscopy and field emission scanning electron microscopy. Permeation performance of NF membranes was examined with a cross-flow flat NF membrane device. Preparing conditions of NF membranes were optimized by studying the change of salt rejection and permeation flux, and the optimum conditions were determined as follows: casting solution concentration 3 wt.%, ECH concentration; 2 wt.%, cross-linking temperature; 50 °C and cross-linking time; 12 h. Furthermore, properties of the optimal NF membrane were tested in different operating conditions. At 0.5 MPa and 25 °C, its salt rejection and permeation flux to 1000 mg·L~(-1) Na2SO4 aqueous solution were 94.36% and 16.78 L · m~(-2)·h~(-1) respectively. Rejections of the membrane to different inorganic electrolyte solutions (1000 mg·L~(-1)) accorded with the following order: Na2SO4 >NaCl >MgSO4 >MgCl2. in addition, the MWCO was about 689 Da, and the zeta potentials were negative in experimental pH range. At last, good durability and stability were exhibited by the means of long-term operation during 2 weeks.
机译:由O-羧甲基壳聚糖(O-CMC)和环氧氯丙烷(ECH)通过在聚丙烯腈(PAN)支撑层上的涂覆和化学交联反应制备了一种新型的复合纳滤膜。 O-CMC由壳聚糖和一氯乙酸合成。 O-CMC和NF膜的化学结构和组成通过红外光谱表征,形态结构通过原子力显微镜和场发射扫描电子显微镜表征。用横流扁平NF膜装置检查NF膜的渗透性能。通过研究脱盐​​率和渗透通量的变化,优化了NF膜的制备条件,确定了最佳条件:浇铸液浓度为3 wt。%,ECH浓度; 2 wt。%,交联温度; 50°C和交联时间; 12小时此外,在不同的操作条件下测试了最佳NF膜的性能。在0.5 MPa和25°C下,其对1000 mg·L〜(-1)Na2SO4水溶液的脱盐率和渗透通量分别为94.36%和16.78 L·m〜(-2)·h〜(-1)。膜对不同的无机电解质溶液(1000 mg·L〜(-1))的排斥符合以下顺序:Na2SO4> NaCl> MgSO4> MgCl2。此外,MWCO约为689 Da,在实验pH范围内zeta电位为负。最后,通过2周的长期操作显示出良好的耐久性和稳定性。

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