Enhanced CO2/CH4 separation performance of mixed-matrix membranes through dispersion of sorption-selective MOF nanocrystals

被引:92
作者
Chen, Ke [1 ]
Xu, Kai [1 ]
Xiang, Long [1 ]
Dong, Xiao [1 ]
Han, Yue [1 ]
Wang, Chongqing [1 ]
Sun, Lin-Bing [1 ]
Pan, Yichang [1 ]
机构
[1] Nanjing Tech Univ, State Key Lab Mat Oriented Chem Engn, Coll Chem Engn, Nanjing 210009, Peoples R China
基金
中国国家自然科学基金;
关键词
Mixed-matrix membrane; Metal-organic frameworks; KAUST-7; Gas separation; CO2; capture; MOLECULAR-SIEVING PROPERTIES; COMPOSITE MEMBRANES; INORGANIC FILLERS; CO2; SEPARATION; GAS; ZIF-8; CH4; POLYIMIDE; POLYMERS; REMOVAL;
D O I
10.1016/j.memsci.2018.06.007
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Mixed matrix membranes (MMMs) derived from metal-organic frameworks (MOFs) nanocrystals represent a promising alternative for overcoming the trade-off between permeability and selectivity derived from the pristine polymeric membrane. The selection of MOFs fillers are mainly focused on their diffusion-selectivity property for gas-pairs. However, the improvement of both gas-permeability and selectivity through addition of sorption-selective MOFs are rarely reported. Herein, the incorporation of CO2-philic KAUST-7 (also referred to as NbOFFIVE-1-Ni) nanocrystals makes the neat 6FDA-Durene polyimide membrane more permeable and more selective, surpassing the state-of-the-art 2008 Robeson upper bound for CO2/CH4. Nano-sized (similar to 80 nm) KAUST-7 crystals with sharp particle size distribution were first fabricated through a co-solvent synthesis method. The explored gas transportation mechanism indicates that the improvement of CO2/CH4 selectivity on MMMs are attributed to the significant raise of the sorption-selectivity rather than the diffusion-selectivity. The favorable interfacial interaction between the imide groups of the 6FDA and the H of the pyrazine in the KAUST-7 enhances plasticization resistance of the neat polymer membrane. The developed MMMs exhibit a promising application in CO2 capture from natural- and bio-gas.
引用
收藏
页码:360 / 370
页数:11
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