Gas permeation properties of bridged-type organosilica membranes at extremely low temperatures and the application to oxygen separation

渗透 渗透 选择性 化学 扩散 吸附 氧气 化学工程 甲烷 分析化学(期刊) 色谱法 材料科学 物理化学 有机化学 热力学 催化作用 生物化学 物理 工程类
作者
Ryosuke Izumi,Norihiro Moriyama,Kazutoshi Ishizaki,Hiroki Nagasawa,Toshinori Tsuru,Masakoto Kanezashi
出处
期刊:Journal of Membrane Science [Elsevier]
卷期号:691: 122228-122228
标识
DOI:10.1016/j.memsci.2023.122228
摘要

A bridged-type organosilica, bis(triethoxysilyl)methane (BTESM) membrane was evaluated in detail for single-gas permeation at temperatures ranging from −130 to −200 °C, and for binary (O2/He, O2/N2) separation at 30 and -115 °C, respectively. The permeance of He, Ar, and N2 demonstrated a trend of activated diffusion as permeance increased with an increase in the temperature; O2 permeance, however, reached its maximum value at about −80 °C. O2 permeance increased with a decrease in the temperature (30 to −80 °C), and permeance then gradually decreased (−80 to −130 °C), which demonstrates surface diffusion. In the case of O2/He binary separation, both O2 and He permeated according to molecular sieving at 30 °C, but at −115 °C, O2/He selectivity was enhanced approximately 10-fold due to permeation blockage by adsorbed O2. On the other hand, in the case of O2/N2 binary separation at −115 °C, the effect of permeation blocking by adsorbed O2 permeance was lessened due to the effect of competitive adsorption, which translated to a level of O2/N2 selectivity that was only 1.5-fold higher than that at 30 °C.
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