Novel tertiary amine-based biphasic solvent for energy-efficient CO2 capture with low corrosivity

被引:29
|
作者
Wang, Rujie [1 ,2 ]
Zhao, Huajun [1 ]
Qi, Cairao [1 ]
Yang, Xiaotong [1 ]
Zhang, Shihan [3 ]
Li, Ming [1 ,2 ]
Wang, Lidong [1 ,2 ]
机构
[1] North China Elect Power Univ, Dept Environm Sci & Engn, Hebei Key Lab Power Plant Flue Gas Multipollutants, Baoding 071003, Peoples R China
[2] North China Elect Power Univ, Coll Environm Sci & Engn, MOE Key Lab Resources & Environm Syst Optimizat, Beijing 102206, Peoples R China
[3] Zhejiang Univ Technol, Coll Environm, Hangzhou 310014, Peoples R China
基金
中国国家自然科学基金;
关键词
CO2; absorption; Tertiary amine; Biphasic solvents; capture; Regeneration energy; CARBON-DIOXIDE CAPTURE; AQUEOUS-SOLUTIONS; MASS-TRANSFER; ABSORPTION; PERFORMANCE; PIPERAZINE; MECHANISM; KINETICS; BEHAVIOR; REGENERATION;
D O I
10.1016/j.energy.2022.125045
中图分类号
O414.1 [热力学];
学科分类号
摘要
A tertiary amine-based biphasic solvent, N,N-dimethylethanolamine (DMEA)/piperazine (PZ)/N-butanol (n-BuOH)/H2O, was proposed for energy-efficient CO2 capture. Low energy-consuming deprotonation dominated the CO2 desorption reaction, resulting in a Q(rxn) as low as 1.17 GJ/t CO2. Combining with the significantly reduced Q(sen) and Q(latent) due to phase separation, an extremely low regeneration energy consumption (1.59 GJ/t CO2) was obtained, which was only 39.8% of 30 wt% MEA, and lower than most of reported biphasic solvents. The addition of n-BuOH not only induced the phase separation, but also reduced the activation energy of the reaction between DMEA and CO2. It worked together with PZ to improve the inherent slow absorption rate of DMEA to a comparable value with 30 wt% MEA. Although a decreased CO2 loading in the total solution was detected because the addition of n-BuOH reduced the equilibrium constant from 3.82 E+2 to 8.98 E+1, this biphasic solvent still achieved high CO2-rich loading (4.23 mol/L), large desorption capacity (3.77 mol/L), and superior desorption efficiency (89.1% at 393.15 K) owing to the good phase separation and desorption properties. In addition, the corrosion rate of CO2-rich phase was only 1.35% of CO2-loaded MEA. This research provided a promising alternative absorbent for CO(2 )capture.
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页数:11
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