Ideal Molecular Sieving with a Dense MOF for Helium Upgrading with Highly Diffusion Selective Mixed Matrix Membranes

被引:0
|
作者
Komal, Ayisha [1 ]
Calderon-Rodriguez, Laura [2 ]
Smirnova, Oksana [1 ]
Grossmann, Eren [1 ]
Varghese, Aparna Binu [1 ]
Alvarez, Karen Marlenne Garcia [3 ]
Schneemann, Andreas [3 ]
Hoyer, Thomas [4 ]
Wyrwa, Ralf [4 ]
Schacher, Felix Helmut [2 ,5 ,6 ]
Knebel, Alexander [1 ,5 ]
机构
[1] Friedrich Schiller Univ Jena, Otto Schott Inst Mat Res, Ctr Energy & Environm Chem 2, Lessingstr 12-14, D-07743 Jena, Germany
[2] Friedrich Schiller Univ Jena, Inst Organ Chem & Macromol Chem IOMC, Humboldtstr 10, D-07743 Jena, Germany
[3] Tech Univ Dresden, Chair Inorgan Chem 1, Bergstr 66, D-01069 Dresden, Germany
[4] Fraunhofer Inst Ceram Technol & Syst, Michael Faraday Str 1, D-07629 Hermsdorf, Germany
[5] Friedrich Schiller Univ Jena, Ctr Energy & Environm Chem, Philosophenweg 7a, D-07743 Jena, Germany
[6] Helmholtz Inst Polymers Energy Applicat Jena HIPOL, Lessingstr 12-14, D-07743 Jena, Germany
关键词
gas separation membranes; helium upgrading; high precision molecular sieving; metal-organic frameworks; mixed matrix membranes; METAL-ORGANIC FRAMEWORKS; GAS SEPARATION; NANOCOMPOSITE MEMBRANES; POLYSULFONE; PERMEABILITY; PERMEATION; NANO;
D O I
10.1002/adfm.202423999
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Helium is one of the most critical resources of this planet, as it is a finite resource, cannot be produced from radioactive decay and escapes the atmosphere, while being extraordinarily important for high-tech applications in research and medicine. A concept of using the "dense" metal-organic framework (MOF) MIL-116(Ga) as a molecular sieve specifically allowing diffusion of He is demonstrated. Incorporating up to 20 wt.% MIL-116(Ga) into polysulfone, a chemically stable, mechanically robust, and commercially available polymer, high-performance mixed matrix membranes are fabricated and tested in gas permeation. The membranes reach He permeabilities up to 37.4. Barrer and He/CH4 selectivity of 1190, mimicking He concentration of 4% of a natural gas reservoir. With increasing filler content, the permeability of He increases, while CH4 permeability decreases. Microstructural analysis of the MIL-116(Ga) reveals that the crystals grew into druse-like hollow crystals, highly beneficial for fast He permeability. CH4, N-2, and CO2 cannot enter the crystal, as proven by sorption experiments, providing high diffusional selectivity. Furthermore, polymer filler interactions are investigated by scanning electron microscopy and energy dispersive X-ray spectroscopy demonstrating ideal compatibility. The performance is benchmarked to existing composite materials and polymers, where MIL-116(Ga)-formate stands out with extraordinary membrane performance.
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页数:9
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