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Ultrafast synthesis of AFX-Type zeolite with enhanced activity in the selective catalytic reduction of NOx and hydrothermal stability

Shortening the synthesis time of SSZ-16 (AFX type) zeolite from several days to 2 h has been achieved using an ultrafast synthesis route involving N,N,N′,N′-tetraethylbicyclo[2.2.2]oct-7-ene-2,3:5,6-dipyrrolidinium (TEBOP) as an organic structure-directing agent (OSDA) in a tubular reactor assisted...

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Autores principales: Chokkalingam, Anand, Chaikittisilp, Watcharop, Iyoki, Kenta, Keoh, Sye Hoe, Yanaba, Yutaka, Yoshikawa, Takeshi, Kusamoto, Tetsuro, Okubo, Tatsuya, Wakihara, Toru
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064439/
https://www.ncbi.nlm.nih.gov/pubmed/35516373
http://dx.doi.org/10.1039/c9ra02787d
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author Chokkalingam, Anand
Chaikittisilp, Watcharop
Iyoki, Kenta
Keoh, Sye Hoe
Yanaba, Yutaka
Yoshikawa, Takeshi
Kusamoto, Tetsuro
Okubo, Tatsuya
Wakihara, Toru
author_facet Chokkalingam, Anand
Chaikittisilp, Watcharop
Iyoki, Kenta
Keoh, Sye Hoe
Yanaba, Yutaka
Yoshikawa, Takeshi
Kusamoto, Tetsuro
Okubo, Tatsuya
Wakihara, Toru
author_sort Chokkalingam, Anand
collection PubMed
description Shortening the synthesis time of SSZ-16 (AFX type) zeolite from several days to 2 h has been achieved using an ultrafast synthesis route involving N,N,N′,N′-tetraethylbicyclo[2.2.2]oct-7-ene-2,3:5,6-dipyrrolidinium (TEBOP) as an organic structure-directing agent (OSDA) in a tubular reactor assisted by seed crystals. Recently, copper exchanged SSZ-16 has been looked upon as one of the few equivalents to SSZ-13 for the selective catalytic reduction of NOx with ammonia (NH(3)-SCR) from automobile exhausts. Hydrothermal stability is one of the crucial properties for any zeolites that compete for automobile applications. All the samples prepared were analyzed using sophisticated physio-chemical techniques and those prepared from TEBOP were subjected to SCR of NOx reactions. The rapid crystal growth induced by high synthesis temperature bestowed the ultrafast prepared SSZ-16 with high crystallinity and hydrothermal stability as well as enhanced SCR of NOx activity even when aged at 800 °C. Compared to 1,1′-(1,4-butanediyl)bis-4-aza-1-azoniabicyclo[2.2.2]octane dibromide (DABCO), TEBOP was found to be desirable as an OSDA for high crystallinity and hydrothermal stability.
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spelling pubmed-90644392022-05-04 Ultrafast synthesis of AFX-Type zeolite with enhanced activity in the selective catalytic reduction of NOx and hydrothermal stability Chokkalingam, Anand Chaikittisilp, Watcharop Iyoki, Kenta Keoh, Sye Hoe Yanaba, Yutaka Yoshikawa, Takeshi Kusamoto, Tetsuro Okubo, Tatsuya Wakihara, Toru RSC Adv Chemistry Shortening the synthesis time of SSZ-16 (AFX type) zeolite from several days to 2 h has been achieved using an ultrafast synthesis route involving N,N,N′,N′-tetraethylbicyclo[2.2.2]oct-7-ene-2,3:5,6-dipyrrolidinium (TEBOP) as an organic structure-directing agent (OSDA) in a tubular reactor assisted by seed crystals. Recently, copper exchanged SSZ-16 has been looked upon as one of the few equivalents to SSZ-13 for the selective catalytic reduction of NOx with ammonia (NH(3)-SCR) from automobile exhausts. Hydrothermal stability is one of the crucial properties for any zeolites that compete for automobile applications. All the samples prepared were analyzed using sophisticated physio-chemical techniques and those prepared from TEBOP were subjected to SCR of NOx reactions. The rapid crystal growth induced by high synthesis temperature bestowed the ultrafast prepared SSZ-16 with high crystallinity and hydrothermal stability as well as enhanced SCR of NOx activity even when aged at 800 °C. Compared to 1,1′-(1,4-butanediyl)bis-4-aza-1-azoniabicyclo[2.2.2]octane dibromide (DABCO), TEBOP was found to be desirable as an OSDA for high crystallinity and hydrothermal stability. The Royal Society of Chemistry 2019-05-29 /pmc/articles/PMC9064439/ /pubmed/35516373 http://dx.doi.org/10.1039/c9ra02787d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Chokkalingam, Anand
Chaikittisilp, Watcharop
Iyoki, Kenta
Keoh, Sye Hoe
Yanaba, Yutaka
Yoshikawa, Takeshi
Kusamoto, Tetsuro
Okubo, Tatsuya
Wakihara, Toru
Ultrafast synthesis of AFX-Type zeolite with enhanced activity in the selective catalytic reduction of NOx and hydrothermal stability
title Ultrafast synthesis of AFX-Type zeolite with enhanced activity in the selective catalytic reduction of NOx and hydrothermal stability
title_full Ultrafast synthesis of AFX-Type zeolite with enhanced activity in the selective catalytic reduction of NOx and hydrothermal stability
title_fullStr Ultrafast synthesis of AFX-Type zeolite with enhanced activity in the selective catalytic reduction of NOx and hydrothermal stability
title_full_unstemmed Ultrafast synthesis of AFX-Type zeolite with enhanced activity in the selective catalytic reduction of NOx and hydrothermal stability
title_short Ultrafast synthesis of AFX-Type zeolite with enhanced activity in the selective catalytic reduction of NOx and hydrothermal stability
title_sort ultrafast synthesis of afx-type zeolite with enhanced activity in the selective catalytic reduction of nox and hydrothermal stability
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9064439/
https://www.ncbi.nlm.nih.gov/pubmed/35516373
http://dx.doi.org/10.1039/c9ra02787d
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