Chemical & Process Engineering Department, University of Strathclyde, Glasgow G1 1XJ, UK.
Molecules. 2021 Sep 15;26(18):5595. doi: 10.3390/molecules26185595.
Amine absorption (or amine scrubbing) is currently the most established method for CO capture; however, it has environmental shortcomings and is energy-intensive. Deep eutectic solvents (DESs) are an interesting alternative to conventional amines. Due to their biodegradability, lower toxicity and lower prices, DESs are considered to be "more benign" absorbents for CO capture than ionic liquids. In this work, the CO absorption capacity of choline-chloride/levulinic-acid-based (ChCl:LvAc) DESs was measured at different temperatures, pressures and stirring speeds using a vapour-liquid equilibrium rig. DES regeneration was performed using a heat treatment method. The DES compositions studied had ChCl:LvAc molar ratios of 1:2 and 1:3 and water contents of 0, 2.5 and 5 mol%. The experimental results showed that the CO absorption capacity of the ChCl:LvAc DESs is strongly affected by the operating pressure and stirring speed, moderately affected by the temperature and minimally affected by the hydrogen bond acceptor (HBA):hydrogen bond donator (HBD) molar ratio as well as water content. Thermodynamic properties for CO absorption were calculated from the experimental data. The regeneration of the DESs was performed at different temperatures, with the optimal regeneration temperature estimated to be 80 °C. The DESs exhibited good recyclability and moderate CO/N selectivity.
胺吸收(或胺洗涤)是目前最成熟的 CO 捕获方法;然而,它存在环境缺点并且能源密集。深共晶溶剂(DESs)是传统胺的一种有趣替代品。由于其生物降解性、低毒性和低价格,DESs 被认为是比离子液体更“良性”的 CO 捕获吸收剂。在这项工作中,使用汽液平衡装置在不同温度、压力和搅拌速度下测量了基于胆碱-氯化物/乙酰丙酸(ChCl:LvAc)DESs 的 CO 吸收能力。DES 再生采用热处理方法。研究的 DES 组成具有 ChCl:LvAc 的摩尔比为 1:2 和 1:3,以及含水量为 0、2.5 和 5 mol%。实验结果表明,ChCl:LvAc DESs 的 CO 吸收能力受操作压力和搅拌速度的强烈影响,受温度的适度影响,受氢键供体(HBD)与氢键受体(HBA)摩尔比以及含水量的影响最小。从实验数据计算了 CO 吸收的热力学性质。在不同温度下对 DESs 进行了再生,估计最佳再生温度为 80°C。DESs 表现出良好的可回收性和适度的 CO/N 选择性。