Abstract
A novel organic template-free Si-rich LTA (Si/Al ratio of 1.5) zeolite membrane was successfully fabricated on the tubular α-alumina support via the secondary growth method. The membranes showed excellent separation performance for water/methanol, water/ethanol and water/isopropanol separations even under high temperature and water-rich conditions. The effect of the operating temperature and feed composition on dehydration performance was also investigated. The best membrane showed ultra-high water selectivity of more than 100,000 at a vapor temperature of 378 K in a 10/90 wt% vapor of water/methanol mixtures through vapor permeation. Moreover, high water selectivity of 3500 was obtained at high temperature of 473 K for water/methanol separation. The Si-rich LTA membranes showed good hydrothermal stability in a pervaporation of a 50 wt% aqueous methanol solution at 333 K for one week, as well as a good thermal stability in a vapor permeation with an equimolar vapor of water/methanol mixture at a high temperature of 423 K for one week.
Original language | English |
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Article number | 116533 |
Journal | Separation and Purification Technology |
Volume | 239 |
DOIs | |
State | Published - 15 May 2020 |
Externally published | Yes |
Keywords
- Hydrothermal stability
- Methanol dehydration
- Si-rich LTA zeolite
- Zeolite membrane