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Thin film composite polyesteramide nanofiltration membranes fabricated from carboxylated chitosan and trimesoyl chloride

机译:由羧化壳聚糖和均苯三甲酰氯制备的薄膜复合聚酯酰胺纳米滤膜

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摘要

Thin film composite polyesteramide nanofiltration membranes were fabricated with interfacial polymerization from carboxylated chitosan and trimesoyl chloride on a microporous polysulfone support membrane. Salt rejection was improved by building a multiple-layer structure that was formed by sequentially repeating the cycles of the interfacial reactions. The chemical structure, surface morphology and charge were characterized for the polyesteramide top layer. The effects of the concentrations of the reactant solutions and the number of cycles of reactant depositions and reactions on the separation performance were investigated. The single-layer polyesteramide membrane produced from 3.5 wt% carboxylated chitosan and 0.7 wt% TMC has a negatively charged surface and shows favorable separation performance: pure water permeation flux of 7.3 L/(m(2) h) at 0.6 MPa gauge feed pressure, and salt rejection of 95.0% for Na2SO4, 65.7% for MgSO4, 33.2% for MgCl2 and 66.3% for NaCl. The multiple-layer polyesteramide membranes show a more negatively charged surface and higher salt rejection than the single-layer polyesteramide membranes. The single-layer polyesteramide membrane PS-[(C-CS)(1.0)/TMC] with a relatively loose structure shows good retention for the reactive black 5 anionic dye. This study opens an interesting research area to explore a new type of thin film composite nanofiltration membrane.
机译:薄膜聚合的聚酯酰胺纳米过滤膜是由羧化壳聚糖和均苯三甲酰氯在微孔聚砜支撑膜上通过界面聚合制备的。通过建立多层结构可以改善盐的排阻,该结构是通过依次重复界面反应的循环而形成的。表征了聚酯酰胺顶层的化学结构,表面形态和电荷。研究了反应物溶液的浓度以及反应物沉积和反应的循环次数对分离性能的影响。由3.5 wt%的羧化壳聚糖和0.7 wt%的TMC制成的单层聚酯酰胺膜带负电的表面,显示出良好的分离性能:在0.6 MPa表压的进料压力下纯水渗透通量为7.3 L /(m(2)h) ,Na2SO4的脱盐率为95.0%,MgSO4的脱盐率为65.7%,MgCl2的脱盐率为33.2%,NaCl的脱盐率为66.3%。与单层聚酯酰胺膜相比,多层聚酯酰胺膜显示出更多的带负电荷的表面和更高的脱盐率。具有相对松散结构的单层聚酯酰胺膜PS-[(C-CS)(1.0)/ TMC]显示了对活性黑5阴离子染料的良好保留。这项研究打开了一个有趣的研究领域,以探索一种新型的薄膜复合纳米过滤膜。

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