Ortiz-Albo Paloma, Ferreira Tiago J, Martins Carla F, Alves Vitor, Esteves Isabel A A C, Cunha-Silva Luís, Kumakiri Izumi, Crespo João, Neves Luísa A
LAQV/REQUIMTE, Department of Chemistry, NOVA School of Science and Technology, FCT NOVA, Universidade NOVA de Lisboa, 2829-516 Caparica, Portugal.
Low Carbon & Resource Efficiency, R&Di, Instituto de Soldadura e Qualidade, Av. Prof. Cavaco Silva 33, 2740-120 Oeiras, Portugal.
Membranes (Basel). 2021 Dec 23;12(1):13. doi: 10.3390/membranes12010013.
Carbon dioxide (CO) capture has become of great importance for industrial processes due to the adverse environmental effects of gas emissions. Mixed matrix membranes (MMMs) have been studied as an alternative to traditional technologies, especially due to their potential to overcome the practical limitations of conventional polymeric and inorganic membranes. In this work, the effect of using different ionic liquids (ILs) with the stable metal-organic framework (MOF) ZIF-8 was evaluated. Several IL@ZIF-8 composites and IL@ZIF-8 MMMs were prepared to improve the selective CO sorption and permeation over other gases such as methane (CH) and nitrogen (N). Different ILs and two distinct loadings were prepared to study not only the effect of IL concentration, but also the impact of the IL structure and affinity towards a specific gas mixture separation. Single gas sorption studies showed an improvement in CO/CH and CO/N selectivities, compared with the ones for the pristine ZIF-8, increasing with IL loading. In addition, the prepared IL@ZIF-8 MMMs showed improved CO selective behavior and mechanical strength with respect to ZIF-8 MMMs, with a strong dependence on the intrinsic IL CO selectivity. Therefore, the selection of high affinity ILs can lead to the improvement of CO selective separation for IL@ZIF-8 MMMs.
由于气体排放对环境的不利影响,二氧化碳(CO₂)捕集对于工业过程变得至关重要。混合基质膜(MMMs)已作为传统技术的替代方案进行了研究,特别是因为它们有潜力克服传统聚合物和无机膜的实际局限性。在这项工作中,评估了使用不同离子液体(ILs)与稳定的金属有机框架(MOF)ZIF-8的效果。制备了几种IL@ZIF-8复合材料和IL@ZIF-8 MMMs,以提高对CO₂相对于其他气体(如甲烷(CH₄)和氮气(N₂))的选择性吸附和渗透。制备了不同的ILs和两种不同的负载量,不仅用于研究IL浓度的影响,还用于研究IL结构以及对特定气体混合物分离的亲和力的影响。单气体吸附研究表明,与原始ZIF-8相比,CO₂/CH₄和CO₂/N₂的选择性有所提高,并随IL负载量增加。此外,所制备的IL@ZIF-8 MMMs相对于ZIF-8 MMMs表现出改善的CO₂选择性行为和机械强度,这强烈依赖于IL对CO₂的固有选择性。因此,选择具有高亲和力的ILs可以提高IL@ZIF-8 MMMs对CO₂的选择性分离。