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Microwave Regeneration and Thermal and Oxidative Stability of Imidazolium Cyanopyrrolide Ionic Liquid for Direct Air Capture of Carbon Dioxide
被引:17
|作者:
Lee, Yun-Yang
[1
]
Cagli, Eda
[1
]
Klemm, Aidan
[1
]
Park, Yensil
[2
]
Dikki, Ruth
[1
]
Kidder, Michelle K.
[2
]
Gurkan, Burcu
[1
]
机构:
[1] Case Western Reserve Univ, Dept Chem & Biomol Engn, 10900 Euclid Ave, Cleveland, OH 44106 USA
[2] Oak Ridge Natl Lab, Energy Sci & Technol Directorate, 1 Bethel Valley Rd,Bldg 5800, Oak Ridge, TN 37830 USA
来源:
关键词:
carbon capture;
dielectric heating;
electromagnetic wave;
oxidative degradation;
thermal degradation;
CO2;
CAPTURE;
ALKALINE STABILITY;
INDUCED DEGRADATION;
CATIONS;
ANION;
ABSORPTION;
SOLVENTS;
PYRROLE;
MONOETHANOLAMINE;
PATHWAYS;
D O I:
10.1002/cssc.202300118
中图分类号:
O6 [化学];
学科分类号:
0703 ;
摘要:
Understanding the oxidative and thermal degradation of CO2 sorbents is essential for assessing long-term sorbent stability in direct air capture (DAC). The potential degradation pathway of imidazolium cyanopyrrolide, an ionic liquid (IL) functionalized for superior CO2 capacity and selectivity, is evaluated under accelerated degradation conditions to elucidate the secondary reactions that can occur during repetitive absorption-desorption thermal-swing cycles. The combined analysis from various spectroscopic, chromatographic, and thermal gravimetric measurements indicated that radical and S(N)2 mechanisms in degradation are encouraged by the nucleophilicity of the anion. Thickening of the liquid and gas evolution are accompanied by 50 % reduction in CO2 capacity after a 7-day exposure to O-2 under 80 degrees C. To prevent long exposure to conventional thermal heating, microwave (MW) regeneration of the CO2-reactive IL is used, where dielectric heating at 80 and 100 degrees C rapidly desorbs CO2 and regenerates the IL without any measurable degradation.
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页数:13
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