MOE Key Laboratory of Resources and Environmental Systems Optimization , North China Electric Power University , Beijing 102206 , China.
School of Environmental Science and Engineering , North China Electric Power University , Baoding 071003 , China.
Environ Sci Technol. 2018 Dec 18;52(24):14556-14563. doi: 10.1021/acs.est.8b05654. Epub 2018 Nov 26.
A novel phase splitter, namely, sulfolane, was proposed to advance the traditional monoethanolamine (MEA) absorption technology for CO capture by simultaneously promoting the absorption rate and lowering heat duty. The phase-splitting phenomenon was observed after the CO loading level had exceeded 0.73 mol CO/L, thereby generating a CO-rich MEA upper layer and a lower layer containing sulfolane. Sulfolane facilitated CO absorption because of its strong affinity with acid gases, which resulted in an absorption rate 2.7 times higher than that of the conventional MEA process. The process simulation using Aspen Plus indicated that the regeneration heat with the MEA/sulfolane mixture as a solvent substantially decreased to 2.67 GJ/t-CO, which was 31% lower than that of the conventional MEA process (3.85 GJ/t-CO). Moreover, the sensible heat and vaporization heat of MEA/sulfolane were markedly decreased by 62.4% and 47.9%, which could be ascribed to the decreased stripping volume and relatively high CO partial pressure caused by liquid-liquid phase separation. The proposed system is proved to be a promising candidate for the advancement of CO capture techniques with high CO absorption capacity, rapid absorption rate, and low-energy penalty.
提出了一种新型的相分离器,即环丁砜,用于推进传统的MEA 吸收技术用于 CO 捕集,同时提高吸收速率并降低热负荷。在 CO 负载水平超过 0.73 mol CO/L 后,观察到相分离现象,从而生成富含 CO 的 MEA 上层和含有环丁砜的下层。由于环丁砜与酸性气体具有很强的亲和力,因此促进了 CO 的吸收,其吸收速率比传统的 MEA 工艺高 2.7 倍。使用 Aspen Plus 进行的过程模拟表明,MEA/环丁砜混合物作为溶剂的再生热显著降低至 2.67 GJ/t-CO,比传统的 MEA 工艺(3.85 GJ/t-CO)低 31%。此外,MEA/环丁砜的显热和蒸发热分别降低了 62.4%和 47.9%,这归因于液-液相分离导致的汽提体积减小和相对较高的 CO 分压。所提出的系统被证明是具有高 CO 吸收能力、快速吸收速率和低能量损耗的 CO 捕集技术的有前途的候选者。