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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Polysulfone/N-phthaloylchitosan novel composite membranes for salt rejection application
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Polysulfone/N-phthaloylchitosan novel composite membranes for salt rejection application

机译:聚砜/ N-邻苯二甲酰壳聚糖新型复合膜的脱盐应用

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摘要

N-phthaloylchitosan (CS) was synthesized by the reaction of chitosan with phthalic anhydride in dimethyl formamide. Different compositions of polysulfone (PSf) and N-phthaloylchitosan were used to prepare novel polysulfone/N-phthaloylchitosan (PSf/CS) composite membranes by phase inversion method. The composition ratios between the former and the latter were 80:20,85:15,90:10, and 95:5. Water flux results revealed that, PSf:CS 80:20 membrane is found to have greatest effective pore area while PSf:CS 95:05 membrane has the smallest value. The pore area is found to be larger with the increase in CS composition. In addition, its water swelling property increases with the increase of CS composition. Water flux results are in consistent with dielectric constant value. Use of known molecular weight of polyethylene glycol rejection study, revealed that, PSf:CS 95:05 membrane possessed the smallest pore size among these membranes. In conclusion, change of ratio between PSf and CS, considerably affects membrane pore size and hydrophilicity. For salt filtration, membrane PSf:CS 95:05 showed 93%, 76.11% and 70.12% rejection of MgSO4, Na2SO4, and NaCl, respectively.
机译:N-邻苯二甲酰壳聚糖(CS)是通过壳聚糖与邻苯二甲酸酐在二甲基甲酰胺中的反应合成的。通过相转化法,采用不同组成的聚砜(PSf)和N-邻苯二甲酰壳聚糖制备新型的聚砜/ N-邻苯二甲酰化壳聚糖(PSf / CS)复合膜。前者与后者之间的组成比为80:20、85:15、90:10和95:5。水通量结果表明,PSf:CS 80:20膜具有最大的有效孔面积,而PSf:CS 95:05膜具有最小的有效孔面积。发现孔面积随着CS组成的增加而变大。另外,其水溶胀性随着CS组成的增加而增加。水通量结果与介电常数值一致。使用已知分子量的聚乙二醇排斥研究表明,PSf:CS 95:05膜在这些膜中具有最小的孔径。总之,PSf与CS的比例变化会显着影响膜的孔径和亲水性。对于盐过滤,膜PSf:CS 95:05分别显示出MgSO4,Na2SO4和NaCl的93%,76.11%和70.12%的截留率。

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