DOE OSTI · 1843742
Pore-Space Partition and Optimization for Propane-Selective High-Performance Propane/Propylene Separation
Abstract
The development of effective propane (C 3 H 8 )-selective adsorbents for the purification of propylene (C 3 H 6 ) from C 3 H 8 /C 3 H 6 mixture is a promising alternative to replace the energy-intensive cryogenic distillation. However, few materials possess the dual desirable features of propane selectivity and high uptake capacity. Here, we report a family of pore-space-partitioned crystalline porous materials (CPM) with remarkable C 3 H 8 uptake capacity (up to 10.9 mmol/g) and the highly desirable, yet uncommon C 3 H 8 selectivity (up to 1.54 at 0.1 bar and 1.44 at 1bar). The selectivity-capacity synergy endows them with record-performing C 3 H 8 /C 3 H 6 separation potential (i.e., C 3 H 6 recovered from the mixture). Moreover, these CPMs exhibit outstanding properties including high stability, low regeneration energy, and multi-modular chemical and geometrical tunability within the same isoreticular framework. Furthermore, the high C 3 H 8 /C 3 H 6 separation performance was further confirmed by the breakthrough experiments.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Hong, Anh N., Yang, Huajun, Li, Tong, Wang, Yong, Wang, Yanxiang, Jia, Xiaoxia, Zhou, Angel, Kusumoputro, Emily, Li, Jinping, Bu, Xianhui, Feng, Pingyun. 2021-07-08. Pore-Space Partition and Optimization for Propane-Selective High-Performance Propane/Propylene Separation. https://doi.org/10.1021/acsami.1c10391
Cite the original work for its findings. Save a collection to share your selection of sources.