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用于乙炔储存和分离的微孔甲酸镁和甲酸锰。

Microporous magnesium and manganese formates for acetylene storage and separation.

作者信息

Samsonenko Denis G, Kim Hyunuk, Sun Yinyong, Kim Ghyung-Hwa, Lee Heung-Soo, Kim Kimoon

机构信息

National Creative Research Initiative Center for Smart Supramolecules, Pohang, Republic of Korea.

出版信息

Chem Asian J. 2007 Apr 2;2(4):484-8. doi: 10.1002/asia.200600390.

Abstract

Acetylene sorption of microporous metal formates M(HCOO)2 (M = Mg and Mn) was investigated. Measurements of acetylene sorption at 196, 275, and 298 K showed a Type I isotherm with quick saturation at low pressures, and 50-75 cm3 g(-1) uptake at 1.0 atm. The single-crystal X-ray structure analysis of the acetylene-adsorbed metal formates revealed that acetylene molecules occupy two independent positions in the zigzag channels of the frameworks with a stoichiometry of M(HCOO)2 x 1/3C2H2, which is consistent with the gas sorption experiments. No specific interaction except van der Waals interactions between the adsorbed acetylene molecules and the walls of the frameworks was found. Sorption properties of other gases, including CO2, CH4, N2, O2, and H2, were also investigated. When the temperature was increased to 298 K, the amount of adsorbed acetylene was still above 60 cm3 g(-1) for Mg(HCOO)2 and 50 cm3 g(-1) for Mn(HCOO)2, whereas the uptake of other gases decreased substantially. The microporous metal formates may thus be useful not only for the storage of acetylene but also its separation from other gases at room or slightly higher temperatures.

摘要

研究了微孔金属甲酸盐M(HCOO)₂(M = Mg和Mn)对乙炔的吸附性能。在196 K、275 K和298 K下对乙炔吸附进行的测量显示出I型等温线,在低压下快速饱和,在1.0 atm下的吸附量为50 - 75 cm³ g⁻¹。对吸附乙炔后的金属甲酸盐进行的单晶X射线结构分析表明,乙炔分子在骨架的锯齿形通道中占据两个独立位置,化学计量比为M(HCOO)₂·1/3C₂H₂,这与气体吸附实验结果一致。除了吸附的乙炔分子与骨架壁之间的范德华相互作用外,未发现其他特定相互作用。还研究了包括CO₂、CH₄、N₂、O₂和H₂在内的其他气体的吸附性能。当温度升至298 K时,Mg(HCOO)₂对乙炔的吸附量仍高于60 cm³ g⁻¹,Mn(HCOO)₂对乙炔的吸附量仍高于50 cm³ g⁻¹,而其他气体的吸附量则大幅下降。因此,微孔金属甲酸盐不仅可用于储存乙炔,还可用于在室温或略高温度下将其与其他气体分离。

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