Designing large-sized and spherical CO2 adsorbents for highly reversible CO2 capture and low pressure drop

Authors
Jung, YoungkyunKo, Young GunNah, In WookChoi, Ung Su
Issue Date
2022-01
Publisher
Elsevier BV
Citation
Chemical Engineering Journal, v.427
Abstract
To enhance the processing efficiency of CO2 capture from flue gas of post-combustion emission using fixed-bed adsorption system, the regenerable adsorbents and low pressure drop should be required. The uniform-sized Polyacrylonitrile (PAN) nanoparticles were synthesized, followed by the surface-modification with alkylamine (APAN) and sec-butanol (APAN-OH) as a strategy for achieving the stabilization of the amine group in the repeated CO2 adsorption/desorption cycles. The synthesized APAN-OH nanoparticles were interconnected one another by Ca-Alg nanofiber as a linker and formed the millimeter-sized sphere with hierarchical pores. At 25 degrees C and 1 bar, CO2 adsorption capacity of a Hierarchically porous spherical adsorbent (HPSA) reached to similar to 2.07 mmol CO2/g HPSA and physicochemical stability of HPSA was achieved even in 50 cycles of CO2 adsorption/desorption. Also, the selectivity for CO2 capture was calculated as about 71 by the IAST model at CO2/N-2 molar ratio of 15:85. Extremely low pressure drop values were recorded in the fixed-bed adsorption system packed with HPSAs, compared with those of APAN-OH nanoparticles. The superior regenerable and large-sized adsorbent with the interior structure resulting in low pressure drop is expected to take the CO2 capture technology a step further.
Keywords
CARBON SPHERES; FT-IR; ADSORPTION; GAS; REGENERATION; PB(II); SBA-15; AMINES; Pressure drop; Post-combustion CO2 capture; Hierarchically porous structure; Millimeter-sized adsorbent; Reversible adsorption/desorption
ISSN
1385-8947
URI
https://pubs.kist.re.kr/handle/201004/115855
DOI
10.1016/j.cej.2021.131781
Appears in Collections:
KIST Article > 2022
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