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新型烟道气 CO2 捕集双相溶剂的动力学、热力学和机理。

Kinetics, Thermodynamics, and Mechanism of a Novel Biphasic Solvent for CO Capture from Flue Gas.

机构信息

College of Environment , Zhejiang University of Technology , Hangzhou 310014 , China.

School of Environmental Science and Engineering , North China Electric Power University , Baoding 071003 , China.

出版信息

Environ Sci Technol. 2018 Mar 20;52(6):3660-3668. doi: 10.1021/acs.est.7b05936. Epub 2018 Feb 27.

Abstract

The main issue related to the deployment of the amine-based absorption process for CO capture from flue gas is its intensive energy penalty. Therefore, this study screened a novel biphasic solvent, comprising a primary amine e.g., triethylenetetramine (TETA) and a tertiary amine e.g., N, N-dimethylcyclohexylamine (DMCA), to reduce the energy consumption. The TETA-DMCA blend exhibited high cyclic capacity of CO absorption, favorable phase separation behavior, and low regeneration heat. Kinetic analysis showed that the gas- and liquid-side mass transfer resistances were comparable in the lean solution of TETA-DMCA at 40 °C, whereas the liquid-side mass transfer resistance became dominant in the rich solution. The rate of CO absorption into TETA-DMCA (4 M, 1:3) solution was comparable to 5 M benchmark monoethanolamine (MEA) solution. Based on a preliminary estimation, the regeneration heat with TETA-DMCA could be reduced by approximately 40% compared with that of MEA. C NMR analysis revealed that the CO absorption into TETA-DMCA was initiated by the reaction between CO and TETA via the zwitterion mechanism, and DMCA served as a CO sinker to regenerate TETA, resulting in the transfer of DMCA from the upper to lower phase. The proposed TETA-DMCA solvent may be a suitable candidate for CO capture.

摘要

从烟道气中捕获 CO 的胺基吸收工艺的主要问题是其能量消耗大。因此,本研究筛选了一种新型两相溶剂,由伯胺(如三乙烯四胺(TETA))和仲胺(如 N,N-二甲基环己胺(DMCA))组成,以降低能耗。TETA-DMCA 共混物表现出高的 CO 吸收循环容量、良好的相分离行为和低的再生热。动力学分析表明,在 40°C 下 TETA-DMCA 贫液中,气液侧传质阻力相当,而在富液中,液侧传质阻力占主导地位。CO 进入 TETA-DMCA(4 M,1:3)溶液的吸收速率与 5 M 基准单乙醇胺(MEA)溶液相当。根据初步估计,与 MEA 相比,TETA-DMCA 的再生热可降低约 40%。C NMR 分析表明,CO 与 TETA 通过两性离子机理发生反应进入 TETA-DMCA,DMCA 作为 CO 吸收剂将 TETA 再生,导致 DMCA 从上层转移到下层。所提出的 TETA-DMCA 溶剂可能是 CO 捕获的合适候选物。

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