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首页> 外文期刊>Journal of Applied Polymer Science >GAS PERMSELECTION PROPERTIES IN SILICONE-COATED ASYMMETRIC POLYETHERSULFONE MEMBRANES
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GAS PERMSELECTION PROPERTIES IN SILICONE-COATED ASYMMETRIC POLYETHERSULFONE MEMBRANES

机译:硅树脂包覆的不对称聚乙烯砜膜中的气体渗透选择特性

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The gas permeation properties of H-2, He, CO2, O-2, and N-2 through silicon-coated polyethersulfone (PESf) asymmetric hollow-fiber membranes with different structures were investigated as a function of pressure and temperature and compared with those of PESf dense membrane and silicone rubber (PDMS) membrane. The PESf asymmetric hollow-fiber membranes were prepared from spinning solutions containing N-methyl-2-pyrrolidone as a solvent, with ethanol, 1-propanol, or water as a nonsolvent-additive. Water was also used as both an internal and an external coagulant. A thin silicone rubber film was coated on the external surface of dried PESf hollow-fiber membranes. The apparent structure characteristics of the separation layer (thickness, porosity, and mean pore size) of the asymmetric membranes were determined by gas permeation method and their cross-section morphologies were examined with a scanning electron microscope. The results reveal that the gas pressure normalized fluxes of the five gases in the three silicone-coated PESf asymmetric membranes are nearly independent of pressure and did not exhibit the dual-mode behavior. The activation energies of permeation in the silicone-coated asymmetric membranes may be larger or smaller than those of PESf dense membrane, which is controlled by the membrane physical structure (skin layer and sublayer structure). Permselectivities for the gas pairs H-2/N-2, He/N-2, CO2/N-2, and O-2/N-2 are also presented and their temperature dependency addressed. (C) 1997 John Wiley & Sons, Inc. [References: 19]
机译:研究了H-2,He,CO2,O-2和N-2通过具有不同结构的涂硅聚醚砜(PESf)不对称中空纤维膜的气体渗透性能,作为压力和温度的函数,并将其与PESf致密膜和硅橡胶(PDMS)膜的制备。 PESf不对称中空纤维膜由含有N-甲基-2-吡咯烷酮作为溶剂,乙醇,1-丙醇或水作为非溶剂添加剂的纺丝溶液制得。水也用作内部和外部凝结剂。在干燥的PESf中空纤维膜的外表面涂一层硅橡胶薄膜。通过气体渗透法确定不对称膜的分离层的表观结构特征(厚度,孔隙率和平均孔径),并用扫描电子显微镜检查其横截面形态。结果表明,在三种有机硅涂覆的PESf不对称膜中,五种气体的气压归一化通量几乎与压力无关,并且没有表现出双模行为。涂有硅酮的不对称膜中的渗透活化能可以大于或小于PESf致密膜的渗透能,后者是由膜的物理结构(表层和亚层结构)控制的。还介绍了气体对H-2 / N-2,He / N-2,CO2 / N-2和O-2 / N-2的渗透性,并说明了它们对温度的依赖性。 (C)1997 John Wiley&Sons,Inc. [参考:19]

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