| Literature DB >> 30368929 |
Hao Wang1,2, Xinglong Dong3, Valentina Colombo4, Qining Wang1, Yanyao Liu1, Wei Liu2, Xin-Long Wang5, Xiao-Ying Huang6, Davide M Proserpio4,7, Angelo Sironi4, Yu Han3, Jing Li1,2.
Abstract
Adsorptive separation of olefin/paraffin mixtures by porous solids can greatly reduce the energy consumption associated with the currently employed cryogenic distillation technique. Here, the complete separation of propane and propylene by a designer microporous metal-organic framework material is reported. The compound, Y6 (OH)8 (abtc)3 (H2 O)6 (DMA)2 (Y-abtc, abtc = 3,3',5,5'-azobenzene-tetracarboxylates; DMA = dimethylammonium), is rationally designed through topology-guided replacement of inorganic building units. Y-abtc is both thermally and hydrothermally robust, and possesses optimal pore window size for propane/propylene separation. It adsorbs propylene with fast kinetics under ambient temperature and pressure, but fully excludes propane, as a result of selective size exclusion. Multicomponent column breakthrough experiments confirm that polymer-grade propylene (99.5%) can be obtained by this process, demonstrating its true potential as an alternative sorbent for efficient separation of propane/propylene mixtures.Entities:
Keywords: adsorbents; adsorptive separation; metal-organic frameworks; molecular sieving; olefin/paraffin separation
Year: 2018 PMID: 30368929 DOI: 10.1002/adma.201805088
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849