胺气处理
吸收(声学)
材料科学
传质
汽化
水溶液
传质系数
吸收能力
分析化学(期刊)
粘度
质量分数
化学工程
化学
聚合物混合物
色谱法
作者
Chikezie Nwaoha,Xiujie Zhang,Yufei Huang,Bin Liu,Paitoon Tontiwachwuthikul
出处
期刊:Energies
[Multidisciplinary Digital Publishing Institute]
日期:2026-08-17
卷期号:19 (16): 3861-3861
摘要
This study investigated the initial CO2 absorption efficiency, initial average overall absorption mass transfer coefficient, absorption heat, heat of vaporization, density, and viscosity of the novel aqueous AMP–1,5-diamino-2-methylpentane (DA2MP)–MEA tri-solvent amine blend solution using a bench-scale absorption column process plant. The concentration of AMP was kept constant at 2 mol·L−1, while the DA2MP concentration ranged from 1 to 2 mol·L−1 and MEA concentration from 2 to 3 mol·L−1, while the total tri-solvent amine blend concentration was kept at 6 mol·L−1. Results showed that the AMP–DA2MP–MEA blend possessed some of the lowest densities but higher viscosities than the other studied amine systems. Results revealed that the AMP–DA2MP–MEA blend has a lower absorber column height (18% to 58%) to achieve initial 90% CO2 absorption efficiency compared to other investigated amine solutions. Notably, the AMP–DA2MP–MEA blends achieved the greatest reduction in absorber height (41–58%) relative to the benchmark MEA solution. The AMP–DA2MP–MEA blend also possesses a higher initial absorber mass transfer coefficient compared with the benchmark MEA solution (65.9% to 118.9%), the AMP–DA2MP blend (6.6% to 40.6%), and the AMP–PZ–MEA blend (44.8% to 91%). The AMP–DA2MP–MEA blend has higher heat of vaporization (up to 9.8%) and absorption heat (up to 28.8%) compared with the other amine systems. These findings indicate that the AMP–DA2MP–MEA tri-solvent blend is a strong candidate for advanced CO2 capture applications and requires further investigation.
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