Efficient Absorption of CO2 by Protic‐Ionic‐Liquid Based Deep Eutectic Solvents
Carbon capture, utilization, and storage (CCUS) are among the key technologies to achieve large‐scale carbon emission reduction globally. Deep eutectic solvents (DESs) are considered as designable solvents, which has attracted intensive attention for CO2 capture. Here, a series of binary DESs are sy...
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Veröffentlicht in: | Chemistry, an Asian journal an Asian journal, 2024-06, Vol.19 (11), p.e202400234-n/a |
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Sprache: | eng |
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Zusammenfassung: | Carbon capture, utilization, and storage (CCUS) are among the key technologies to achieve large‐scale carbon emission reduction globally. Deep eutectic solvents (DESs) are considered as designable solvents, which has attracted intensive attention for CO2 capture. Here, a series of binary DESs are synthesized through one‐step mixing with the starting materials of protic ionic liquid (PIL) and amine. The eutectic behavior was investigated by measuring the melting point of PILs and amine. The saturated vapor of these DESs and industrial MDEA solution were measured and compared. These DESs are investigated to have high absorption capacity (0.1 g ⋅ g−1 at 1.0 bar and 25 °C), superior apparent absorption rate constant (0.381 min−1 vs 0.012 min−1 of 70 wt.% MDEA), moderate interaction with CO2 (the enthalpy change is as low as −34.8 kJ ⋅ mol−1). The absorption mechanism is also investigated by NMR analysis. Eight absorption/desorption regeneration experiments are carried out to show their reversibility. Considering the advantages, including convenience of synthesis, large absorption capacity, fast absorption rate, and moderate interaction energy as well as good regeneration, these DESs are believed to be as potential CO2 absorbent in practical applications.
This paper proposes the preparation of a series of binary deep eutectic solvents (DESs) by one‐step mixing with the starting materials of protic ionic liquid (PIL) and amine. These DESs have convenience of synthesis, large absorption capacity, fast absorption rate, moderate interaction energy as well as good recyclability. They are believed to be as potential CO2 absorbent in practical application. |
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ISSN: | 1861-4728 1861-471X |
DOI: | 10.1002/asia.202400234 |