Hydrolytically stable fluorinated metal-organic frameworks for energy-efficient dehydration

Natural gasmust be dehydrated before it can be transported and used, but conventional drying agents such as activated alumina or inorganic molecular sieves require an energy-intensive desiccant-regeneration step. We report a hydrolytically stable fluorinated metal-organic framework, AlFFIVE-1-Ni (KA...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2017-05, Vol.356 (6339), p.731-735
Hauptverfasser: Cadiau, Amandine, Belmabkhout, Youssef, Adil, Karim, Bhatt, Prashant M., Pillai, Renjith S., Shkurenko, Aleksander, Martineau-Corcos, Charlotte, Maurin, Guillaume, Eddaoudi, Mohamed
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Sprache:eng
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Zusammenfassung:Natural gasmust be dehydrated before it can be transported and used, but conventional drying agents such as activated alumina or inorganic molecular sieves require an energy-intensive desiccant-regeneration step. We report a hydrolytically stable fluorinated metal-organic framework, AlFFIVE-1-Ni (KAUST-8), with a periodic array of open metal coordination sites and fluorine moieties within the contracted square-shaped one-dimensional channel. This material selectively removed water vapor from gas streams containing CO₂, N₂, CH₄, and higher hydrocarbons typical of natural gas, as well as selectively removed both H₂O and CO₂ in N₂-containing streams. The complete desorption of the adsorbed water molecules contained by the AlFFIVE-1-Ni sorbent requires relatively moderate temperature (∼105°C) and about half the energy input for commonly used desiccants.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.aam8310