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Asymmetric mixed matrix membranes with zeolite imidazolate frameworks (ZIF-8, ZIF-67, bimetallic ZIF-8/67) and polyethersulfone for high flux and high selective hydrogen separation
被引:0
|作者:
Jonnalagedda, Aditya
[1
]
Choudhari, Shreyas Atul
[1
]
Nayak, Bharat
[1
]
Pani, Ajaya Kumar
[1
]
Kuncharam, Bhanu Vardhan Reddy
[1
]
机构:
[1] Birla Inst Technol & Sci, Dept Chem Engn, Pilani 333031, Rajasthan, India
来源:
关键词:
bimetallic ZIF-8/67;
hydrogen separation;
metal organic framework;
mixed matrix membrane;
polyethersulfone;
ZIF-67;
ZIF-8;
GAS SEPARATION;
CO2/CH4;
POLYMER;
POLYIMIDE;
POLYSULFONE;
PERFORMANCE;
FABRICATION;
FILLERS;
MOFS;
CO2;
D O I:
10.1002/pen.27209
中图分类号:
TQ [化学工业];
学科分类号:
0817 ;
摘要:
For producing high-purity hydrogen (H2) from hydrocarbon reforming, membrane-based separation can be used. In this study, mixed matrix polymer membranes using metal-organic framework (MOF) nanoparticles are explored to overcome the permeability-selectivity trade-off of traditional polymeric membranes. Highly permeable and highly H2 selective MMM using ZIF-8, ZIF-67, and bimetallic ZIF-8/67 MOFs were fabricated via a non-solvent induced phase inversion method by incorporating an intermediate solvent evaporation step. MMMs with 5, 10, and 15 wt.% of nanofillers loadings were prepared and tested for single gas (H2, CO2, CH4, and N2) permeability at 1-2 bar pressures. MMMs permeability and selectivities exceeded the Robeson upper bound (2008) for H2/CO2 separation, demonstrating the potential for obtaining high-purity hydrogen at low pressures. H2/N2 selectivity of 43.4, H2/CO2 selectivity of 27.86 for and H2/CH4 selectivity of 31.36 were obtained. Analytical techniques such as XRD, FTIR, and DSC were used to explain the transport mechanism in the MMMs. The cross-sectional structure and morphology of MMMs were analyzed with field-emission scanning electron microscope (FESEM) to provide insights into the membrane's porous structure.
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页数:17
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