Yuan Ya-Fei, Wang Yong-Sheng, Zhang Xue-Liang, Li Wen-Cui, Hao Guang-Ping, Han Lu, Lu An-Hui
State Key Laboratory of Fine Chemicals, Liaoning Key Laboratory for Catalytic Conversion of Carbon Resources, and School of Chemical Engineering, Dalian University of Technology, Dalian, 116024, P. R. China.
School of Chemistry and Chemical Engineering, State Key Laboratory of Composite Materials, Shanghai Key Laboratory for Molecular Engineering of Chiral Drugs, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai, P. R. China.
Angew Chem Int Ed Engl. 2021 Aug 23;60(35):19063-19067. doi: 10.1002/anie.202106523. Epub 2021 Jul 20.
Adsorptive separation is an appealing technology for propylene and propane separation; however, the challenge lies in the design of efficient adsorbents which can distinguish the two molecules having very similar properties. Here we report a kinetically amplified separation by creating wiggling mesopores in structurally robust carbon monoliths. The wiggling mesopores with alternating wide and narrow segments afford a surface area of 413 m g and a tri-modal pore size distribution centered at 1.5, 4.2 and 6.6 nm, respectively. The synergistically kinetic and equilibrium effects were observed and quantitatively assessed, which together ensured a remarkable propylene/propane selectivity up to 39. This selectivity outperformed not only the available carbon adsorbents but also highly competitive among the dominated crystalline porous adsorbents. In addition, the wiggling mesoporous carbon adsorbent showed excellent dynamical separation stability, which ensured its great potential in practical molecular separations.
吸附分离是一种用于丙烯和丙烷分离的有吸引力的技术;然而,挑战在于设计能够区分这两种性质非常相似的分子的高效吸附剂。在此,我们报告了通过在结构坚固的碳块中创建摆动中孔实现的动力学放大分离。具有交替宽段和窄段的摆动中孔提供了413 m²/g的表面积和分别以1.5、4.2和6.6 nm为中心的三峰孔径分布。观察并定量评估了协同的动力学和平衡效应,这共同确保了高达39的显著丙烯/丙烷选择性。这种选择性不仅优于现有的碳吸附剂,而且在占主导地位的晶体多孔吸附剂中也具有高度竞争力。此外,摆动中孔碳吸附剂表现出优异的动态分离稳定性,这确保了其在实际分子分离中的巨大潜力。