Phase‐Controlled Synthesis of Zeolites from Sodium Aluminosilicate under OSDA/Solvent‐Free Conditions
OSDA/solvent‐free synthesis of zeolites is suitable for practical commercialization due to low environmental damage and low cost. However, only a few types of zeolites have been successfully synthesized by this method. In this study, ANA, CAN, GIS, SOD, FAU and LTA type zeolites were synthesized by...
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Veröffentlicht in: | European journal of inorganic chemistry 2021-04, Vol.2021 (14), p.1405-1409 |
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Sprache: | eng |
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Zusammenfassung: | OSDA/solvent‐free synthesis of zeolites is suitable for practical commercialization due to low environmental damage and low cost. However, only a few types of zeolites have been successfully synthesized by this method. In this study, ANA, CAN, GIS, SOD, FAU and LTA type zeolites were synthesized by the OSDA/solvent‐free synthesis method by changing the Si/Al ratio and crystallization temperature in detail. At higher Si/Al ratios, FAU, GIS and ANA type zeolites were obtained with an increase of crystallization temperature. Meanwhile, at lower Si/Al ratios, LTA, SOD and CAN type zeolites were obtained with an increase of crystallization temperature. It was found that zeolites with high T atom density were synthesized with an increase of the crystallization temperature; zeolite with a high T atomic density is more stable. This work reveals the correlation between the Si / Al ratio and the crystallization temperature in OSDA/solvent‐free synthesis of zeolites, which provides a clear guideline for the OSDA/solvent‐free synthesis of zeolites.
Six types of pure zeolites (ANA, CAN, GIS, SOD, FAU, and LTA) were synthesized by the OSDA/solvent‐free synthesis method by changing the Si/Al ratio and crystallization temperature. This work reveals the correlation between the Si/Al ratio and the crystallization temperature in OSDA/solvent‐free synthesis of zeolites, which provides a clear guideline to obtain various zeolites with the OSDA/solvent‐free method. |
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ISSN: | 1434-1948 1099-0682 |
DOI: | 10.1002/ejic.202100049 |