Green Synthesis of Highly CO2‑Selective CHA Zeolite Membranes in All-Silica and Fluoride-Free Solution for CO2/CH4 Separations

Zeolite membranes with higher Si contents displayed higher resistances to water vapor in gas mixtures. CHA zeolite membranes from an all-silica gel/solution (namely, Si-CHA herein) were always prepared by the fluoride route. High-quality Si-CHA zeolite membranes were prepared using a green and fluor...

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Veröffentlicht in:Energy & fuels 2020-09, Vol.34 (9), p.11307-11314
Hauptverfasser: Zhou, Junjing, Gao, Feng, Sun, Kuo, Jin, Xiaoyu, Zhang, Yue, Liu, Bo, Zhou, Rongfei
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Sprache:eng ; jpn
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Zusammenfassung:Zeolite membranes with higher Si contents displayed higher resistances to water vapor in gas mixtures. CHA zeolite membranes from an all-silica gel/solution (namely, Si-CHA herein) were always prepared by the fluoride route. High-quality Si-CHA zeolite membranes were prepared using a green and fluorite-free synthesis route in a diluted all-silica solution via a single hydrothermal synthesis step in this study. The as-synthesized membranes had a compact CHA zeolite layer with a Si/Al ratio in the framework of ∼75 and a thickness of 2.5 μm. A trace of aluminum in the membrane came from the alumina support. Separation performances through Si-CHA zeolite membranes as functions of pressure drop and temperature were measured. The best membrane displayed a CO2 permeance of 1.2 × 10–6 mol (m2 s Pa)−1 and CO2/CH4 selectivity as high as 480 for an equimolar CO2/CH4 gas mixture at 298 K and 0.2 MPa pressure drop. Si-CHA zeolite membranes displayed good and stable separation performance in a wet mixture.
ISSN:0887-0624
1520-5029
DOI:10.1021/acs.energyfuels.0c01717