Cargando…

Effect of template removal using plasma treatment on the structure and catalytic performance of MCM-22

To investigate the effect of template removal methods on the structure, properties and catalytic performance of the MCM-22 zeolite, dielectric-barrier discharge (DBD) plasma treatment and thermal calcination have been comparatively studied for the removal of hexamethyleneimine (HMI) from the two-dim...

Descripción completa

Detalles Bibliográficos
Autores principales: Hu, Min, Zhao, Binran, Zhao, Dong-Yang, Yuan, Mei-Ting, Chen, Huiyong, Hao, Qing-Qing, Sun, Ming, Xu, Long, Ma, Xiaoxun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080021/
https://www.ncbi.nlm.nih.gov/pubmed/35539506
http://dx.doi.org/10.1039/c8ra00212f
_version_ 1784702689850949632
author Hu, Min
Zhao, Binran
Zhao, Dong-Yang
Yuan, Mei-Ting
Chen, Huiyong
Hao, Qing-Qing
Sun, Ming
Xu, Long
Ma, Xiaoxun
author_facet Hu, Min
Zhao, Binran
Zhao, Dong-Yang
Yuan, Mei-Ting
Chen, Huiyong
Hao, Qing-Qing
Sun, Ming
Xu, Long
Ma, Xiaoxun
author_sort Hu, Min
collection PubMed
description To investigate the effect of template removal methods on the structure, properties and catalytic performance of the MCM-22 zeolite, dielectric-barrier discharge (DBD) plasma treatment and thermal calcination have been comparatively studied for the removal of hexamethyleneimine (HMI) from the two-dimensional layered precursor of MCM-22 (MCM-22(P)). The materials were characterized using FT-IR, TG, XRD, N(2) adsorption at low temperature, NH(3)-TPD, and (27)Al and (29)Si MAS NMR. The results revealed that the seven-membered heterocyclic compound HMI can be effectively removed from the MCM-22 zeolite, and the condensation of silanol groups on the neighboring surface of MWW nanosheets can be induced by DBD treatment. Compared with calcination, DBD treatment could preserve the structure well and decrease the formation of extra-framework aluminum. Consequently, the concentration of acidic sites over MCM-22 treated by DBD (MCM-22(DBD)) is higher than that over calcined MCM-22 (MCM-22(C)). Moreover, MCM-22(DBD) possesses a certain amount of external surface area derived from the intercrystal pores due to the inhibiting effect of the condensation of the silanol groups on the external surface of the MCM-22 crystals. The activity and product selectivity of the Fischer–Tropsch (FT) synthesis was investigated over cobalt supported on the obtained MCM-22 zeolites. Compared with Co/MCM-22(C), Co/MCM-22(DBD) shows a higher catalytic activity in the FT synthesis reaction. Moreover, Co/MCM-22(DBD) can effectively decrease CH(4) selectivity and increase C(5)–C(20) liquid fuel selectivity.
format Online
Article
Text
id pubmed-9080021
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90800212022-05-09 Effect of template removal using plasma treatment on the structure and catalytic performance of MCM-22 Hu, Min Zhao, Binran Zhao, Dong-Yang Yuan, Mei-Ting Chen, Huiyong Hao, Qing-Qing Sun, Ming Xu, Long Ma, Xiaoxun RSC Adv Chemistry To investigate the effect of template removal methods on the structure, properties and catalytic performance of the MCM-22 zeolite, dielectric-barrier discharge (DBD) plasma treatment and thermal calcination have been comparatively studied for the removal of hexamethyleneimine (HMI) from the two-dimensional layered precursor of MCM-22 (MCM-22(P)). The materials were characterized using FT-IR, TG, XRD, N(2) adsorption at low temperature, NH(3)-TPD, and (27)Al and (29)Si MAS NMR. The results revealed that the seven-membered heterocyclic compound HMI can be effectively removed from the MCM-22 zeolite, and the condensation of silanol groups on the neighboring surface of MWW nanosheets can be induced by DBD treatment. Compared with calcination, DBD treatment could preserve the structure well and decrease the formation of extra-framework aluminum. Consequently, the concentration of acidic sites over MCM-22 treated by DBD (MCM-22(DBD)) is higher than that over calcined MCM-22 (MCM-22(C)). Moreover, MCM-22(DBD) possesses a certain amount of external surface area derived from the intercrystal pores due to the inhibiting effect of the condensation of the silanol groups on the external surface of the MCM-22 crystals. The activity and product selectivity of the Fischer–Tropsch (FT) synthesis was investigated over cobalt supported on the obtained MCM-22 zeolites. Compared with Co/MCM-22(C), Co/MCM-22(DBD) shows a higher catalytic activity in the FT synthesis reaction. Moreover, Co/MCM-22(DBD) can effectively decrease CH(4) selectivity and increase C(5)–C(20) liquid fuel selectivity. The Royal Society of Chemistry 2018-04-24 /pmc/articles/PMC9080021/ /pubmed/35539506 http://dx.doi.org/10.1039/c8ra00212f Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Hu, Min
Zhao, Binran
Zhao, Dong-Yang
Yuan, Mei-Ting
Chen, Huiyong
Hao, Qing-Qing
Sun, Ming
Xu, Long
Ma, Xiaoxun
Effect of template removal using plasma treatment on the structure and catalytic performance of MCM-22
title Effect of template removal using plasma treatment on the structure and catalytic performance of MCM-22
title_full Effect of template removal using plasma treatment on the structure and catalytic performance of MCM-22
title_fullStr Effect of template removal using plasma treatment on the structure and catalytic performance of MCM-22
title_full_unstemmed Effect of template removal using plasma treatment on the structure and catalytic performance of MCM-22
title_short Effect of template removal using plasma treatment on the structure and catalytic performance of MCM-22
title_sort effect of template removal using plasma treatment on the structure and catalytic performance of mcm-22
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080021/
https://www.ncbi.nlm.nih.gov/pubmed/35539506
http://dx.doi.org/10.1039/c8ra00212f
work_keys_str_mv AT humin effectoftemplateremovalusingplasmatreatmentonthestructureandcatalyticperformanceofmcm22
AT zhaobinran effectoftemplateremovalusingplasmatreatmentonthestructureandcatalyticperformanceofmcm22
AT zhaodongyang effectoftemplateremovalusingplasmatreatmentonthestructureandcatalyticperformanceofmcm22
AT yuanmeiting effectoftemplateremovalusingplasmatreatmentonthestructureandcatalyticperformanceofmcm22
AT chenhuiyong effectoftemplateremovalusingplasmatreatmentonthestructureandcatalyticperformanceofmcm22
AT haoqingqing effectoftemplateremovalusingplasmatreatmentonthestructureandcatalyticperformanceofmcm22
AT sunming effectoftemplateremovalusingplasmatreatmentonthestructureandcatalyticperformanceofmcm22
AT xulong effectoftemplateremovalusingplasmatreatmentonthestructureandcatalyticperformanceofmcm22
AT maxiaoxun effectoftemplateremovalusingplasmatreatmentonthestructureandcatalyticperformanceofmcm22