Highly facilitated permeation and enrichment of oxygen from air through a polyvinylimidazole membrane ligated with cobaltporphyrin that kinetically interacts with oxygen†

Hiromi Shinohara, Hirotsugu Araihara and Hiroyuki Nishide
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Abstract

A dense and tough membrane of cobalt tetraphenylporphyrin (CoTPP) and poly(1-vinylimidazole-co-octyl methacrylate) (OIm) is prepared on a porous support. The oxygen permeability coefficient and oxygen/nitrogen permselectivity reach 10 Barrer and >110, respectively, at a pressure difference between the feed side and permeate side of 2 cmHg. The membrane with a diameter of 10 cm enriches oxygen from dried air to an oxygen concentration >60% through a one-shot permeation process. The reversible but kinetically very active interaction between oxygen molecules and the CoTPP fixed in the OIm membrane is analyzed while the membrane is under high oxygen pressure or low temperature using spectroscopy techniques including laser-flash photolysis: i.e. 920 cmHg for the half of the CoTPP interacted with oxygen and extremely rapid oxygen-releasing rate constant of approximately 106 s−1, when extrapolated at room temperature. The enhanced oxygen diffusivity is discussed for the oxygen permeation facilitated through the membrane.

Abstract Image

通过与氧†动力学相互作用的钴卟啉连接的聚乙烯咪唑膜,高度促进了空气中氧的渗透和富集
在多孔载体上制备了四苯基卟啉钴(CoTPP)和聚(1-乙烯基咪唑-甲基丙烯酸共辛酯)(OIm)致密而坚韧的膜。当进料侧和渗透侧压差为2 cmHg时,氧渗透系数和氧/氮透性分别达到10 Barrer和110。直径为10 cm的膜通过一次渗透过程将干燥空气中的氧气富集到氧浓度60%。当膜处于高氧压或低温时,利用光谱学技术分析了氧分子与固定在OIm膜上的CoTPP之间可逆但动力学上非常活跃的相互作用,包括激光闪光光解:即,一半的CoTPP与氧相互作用为920 cmHg,在室温下推断,极快的氧释放速率常数约为106 s−1。讨论了氧扩散率的提高,促进了氧通过膜的渗透。
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