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- 2023 AIChE Annual Meeting
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- Membrane Formation, Manufacturing, and Module Design
- (415g) Scale-up of CO2-Selective Nanoporous Single-Layer Graphene Membranes
Figure a) Large graphene coupons on Cu foil. b) Schematic of the membrane module. c) The evolution of the membrane area from 1 cm2 to 5 cm2 and to 50 cm2. d) A large-area graphene coupon produced by the novel process described above. The ruler shows a graphene coupon successfully transferred on a high-flux porous support (PES). The coupon size is larger than 11 cm in size with an area higher than 50 cm2, which is about 50 times larger than the state-of-the-art.
Reference:
(1) He, G.; Huang, S.; Villalobos, L. F.; Zhao, J.; Mensi, M.; Oveisi, E.; Rezaei, M.; Agrawal, K. V. High-Permeance Polymer-Functionalized Single-Layer Graphene Membranes That Surpass the Postcombustion Carbon Capture Target. Energy Environ. Sci. 2019, 12 (11), 3305â3312. https://doi.org/10.1039/C9EE01238A.
(2) Huang, S.; Li, S.; Villalobos, L. F.; Dakhchoune, M.; Micari, M.; Babu, D. J.; Vahdat, M. T.; Mensi, M.; Oveisi, E.; Agrawal, K. V. Millisecond Lattice Gasification for High-Density CO 2 - and O 2 -Sieving Nanopores in Single-Layer Graphene. Sci. Adv. 2021, 7 (9), eabf0116. https://doi.org/10.1126/sciadv.abf0116.
(3) Hsu, K.-J.; Li, S.; Micari, M.; Chi, H.-Y.; Zhong, L.; Villalobos, L. F.; Huang, S.; Duan, X.; Züttel, A.; Agrawal, K. V. Pyridinic Nitrogen Substituted Two-Dimensional Pores for Rapid and Selective CO2 Transport. Submitted.
(4) Micari, M.; Dakhchoune, M.; Agrawal, K. V. Techno-Economic Assessment of Postcombustion Carbon Capture Using High-Performance Nanoporous Single-Layer Graphene Membranes. Journal of Membrane Science 2021, 624, 119103. https://doi.org/10.1016/j.memsci.2021.119103.