Pramanik Bikram, Sahoo Rupam, Krishna Rajamani, Das Madhab C
Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur, West Bengal, 721302, India.
Van't Hoff Institute for Molecular Sciences, University of Amsterdam, Science Park 904, Amsterdam, 1098 XH, The Netherlands.
Small. 2025 Feb;21(8):e2411456. doi: 10.1002/smll.202411456. Epub 2024 Dec 23.
The separation and purification of acetylene from the light hydrocarbon gas mixtures is considered as one of the most industrially challenging task for the production of fine chemicals. Though metal-organic frameworks (MOFs) are promising candidates for such separation and offer a cost and energy-efficient pathway, achieving the trade-off between sorption capacity and separation selectivity along with framework robustness is a daunting task and demands effective design. Herein, a new 3D chemically stable MOF, IITKGP-24 (stable over a wide range of aqueous pH solution, pH = 2-12) is developed, displaying excellent separation selectivity of 13.9 for CH/CO (50:50) even at ambient conditions and maintained a trade-off between sorption capacity and separation selectivity. Most importantly, the breakthrough performance analysis under the industrially relevant gas mixture composition revealed that the developed framework possesses excellent separation of acetylene from not only CH/CO (50:50) gas mixtures but also from the quaternary CH/CH/CH/CO (25:25:25:25) feed gas streams. Separation of CH from such a four component gas mixture by MOFs is unexplored. The exceptional framework robustness, high CH/CO uptake ratio, low heat of adsorption, and excellent recyclability with easy regenerability made the developed framework promising candidate toward this challenging separation.
从轻质烃类气体混合物中分离和提纯乙炔被认为是精细化学品生产中最具工业挑战性的任务之一。尽管金属有机框架材料(MOFs)是此类分离的有前途的候选材料,并提供了一条经济高效的途径,但要在吸附容量和分离选择性之间取得平衡,同时确保框架的稳健性,是一项艰巨的任务,需要进行有效的设计。在此,开发了一种新的三维化学稳定的MOF,IITKGP - 24(在广泛的水相pH溶液,pH = 2 - 12范围内稳定),即使在环境条件下,对CH/CO(50:50)也表现出13.9的优异分离选择性,并在吸附容量和分离选择性之间保持了平衡。最重要的是,在工业相关气体混合物组成下的突破性能分析表明,所开发的框架不仅对CH/CO(50:50)气体混合物,而且对四元CH/CH/CH/CO(25:25:25:25)进料气流都具有优异的乙炔分离性能。通过MOFs从这种四组分气体混合物中分离CH尚未有研究。该框架具有出色的稳健性、高CH/CO吸附比、低吸附热以及易于再生的优异可回收性,使其成为这一具有挑战性分离任务的有前途的候选材料。