School of Chemistry, Monash University, Clayton, Victoria 3800, Australia.
Phys Chem Chem Phys. 2013 Dec 14;15(46):19994-9. doi: 10.1039/c3cp54082k.
A series of multifunctional protic ionic liquids (PILs), some of which are based on a combination of primary and tertiary amines in the same moiety coupled with a carboxylic acid, have been synthesised and employed for CO2 capture, yielding absorption capacities comparable to standard absorbents. In contrast to traditional amine absorbers, CO2 was found to desorb at lower temperatures and hence could result in a significant reduction in both the energy required to strip the absorber of CO2 and the thermally activated degradation mechanisms, which in traditional absorbers result in the loss of absorber and the production of toxic compounds. The lower basicity of the amine sites resultant from PIL formation decreases the binding energy of the CO2 to the absorber. The weaker basicity is also evidenced by lower pH of the PIL CO2 absorbers, which reduces common corrosion problems associated with traditional amine absorbers.
一系列多功能质子离子液体(PILs)已经被合成并应用于 CO2 捕获,其中一些是基于同一部分的伯胺和叔胺与羧酸的结合,其吸收能力可与标准吸收剂相媲美。与传统的胺吸收剂相比,CO2 被发现可以在较低的温度下解吸,因此可以显著降低脱除 CO2 所需的能量以及热激活降解机制,而传统的吸收剂则会导致吸收剂的损失和有毒化合物的产生。PIL 形成导致胺位的碱性降低,从而降低了 CO2 与吸收剂的结合能。较弱的碱性也可以通过 PIL CO2 吸收剂的较低 pH 值来证明,这降低了与传统胺吸收剂相关的常见腐蚀问题。