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首页> 外文期刊>Chemical engineering journal >Chemical modification of P84 polyimide as anion-exchange membranes in a free-flow isoelectric focusing system for protein separation
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Chemical modification of P84 polyimide as anion-exchange membranes in a free-flow isoelectric focusing system for protein separation

机译:P84聚酰亚胺在自由流动等电聚焦系统中作为阴离子交换膜的化学修饰,用于蛋白质分离

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摘要

By means of amination with diamine and methylation with methyl iodide, we have modified P84 micro-porous polyimide membranes with characteristics of highly charged anion-exchange membranes. FTIR (Fourier transform infrared-attenuated total reflection) and XPS (X-ray phbtoelectron spectroscopy) confirm the amination and methylation reactions on membrane surfaces. The intrinsic properties of the newly developed anion-exchange membranes have been fully characterized in terms of ζ-potentials, electrical resistances, PWPs (pure water permeation) and pore size distributions. By using the newly developed membranes, a free-flow isoelectric focusing (1EM-FFIEF) has been set up for the separation of myoglobin (Mb) and lysozyme (Lys) mixtures. Experimental data show that (1) the Mb flux via the highly charged P84 anion-exchange membrane can be 10 times higher than that of the original P84 membrane and (2) the high surface charge is the predominant factor for the enhanced Mb flux. HPLC (high performance liquid chromatography) results show that not only the Mb flux was high, but also its purity in the permeate side is extremely high. It is therefore concluded that the diamine and methyl iodide modifications can effectively modulate P84 nano-porous membranes with anion-exchange characteristics, which is suitable for the IEM-FF1EF application.
机译:通过用二胺胺化和用甲基碘甲基化,我们改性了具有高电荷阴离子交换膜特性的P84微孔聚酰亚胺膜。 FTIR(傅立叶变换红外衰减全反射)和XPS(X射线光电子能谱)证实了膜表面的胺化和甲基化反应。新开发的阴离子交换膜的内在特性已通过ζ电位,电阻,PWP(纯水渗透)和孔径分布进行了充分表征。通过使用新开发的膜,已经建立了自由流等电聚焦(1EM-FFIEF),用于分离肌红蛋白(Mb)和溶菌酶(Lys)混合物。实验数据表明:(1)高电荷的P84阴离子交换膜的Mb通量可以是原始P84膜的Mb通量的10倍,(2)高表面电荷是Mb通量提高的主要因素。 HPLC(高效液相色谱)结果表明,不仅Mb通量很高,而且在渗透侧的纯度也很高。因此可以得出结论,二胺和碘甲烷的修饰可以有效地调节具有阴离子交换特性的P84纳米多孔膜,适用于IEM-FF1EF应用。

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