Microwaves effectively examine the extent and type of coking over acid zeolite catalysts

Catalyst deactivation by coke deposition is a major drawback in industrial processes. Here, the authors show a non-intrusive microwave cavity perturbation technique as a powerful tool to determine the nature and extent of coke accumulation in industrially-relevant zeolite catalysts.

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Autores principales: B. Liu, D. R. Slocombe, J. Wang, A. Aldawsari, S. Gonzalez-Cortes, J. Arden, V. L. Kuznetsov, H. AlMegren, M. AlKinany, T. Xiao, P. P. Edwards
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Lenguaje:EN
Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/0c70fa21eaa04a5f8f39e91b4107c7b8
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spelling oai:doaj.org-article:0c70fa21eaa04a5f8f39e91b4107c7b82021-12-02T15:38:52ZMicrowaves effectively examine the extent and type of coking over acid zeolite catalysts10.1038/s41467-017-00602-82041-1723https://doaj.org/article/0c70fa21eaa04a5f8f39e91b4107c7b82017-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-017-00602-8https://doaj.org/toc/2041-1723Catalyst deactivation by coke deposition is a major drawback in industrial processes. Here, the authors show a non-intrusive microwave cavity perturbation technique as a powerful tool to determine the nature and extent of coke accumulation in industrially-relevant zeolite catalysts.B. LiuD. R. SlocombeJ. WangA. AldawsariS. Gonzalez-CortesJ. ArdenV. L. KuznetsovH. AlMegrenM. AlKinanyT. XiaoP. P. EdwardsNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-7 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
B. Liu
D. R. Slocombe
J. Wang
A. Aldawsari
S. Gonzalez-Cortes
J. Arden
V. L. Kuznetsov
H. AlMegren
M. AlKinany
T. Xiao
P. P. Edwards
Microwaves effectively examine the extent and type of coking over acid zeolite catalysts
description Catalyst deactivation by coke deposition is a major drawback in industrial processes. Here, the authors show a non-intrusive microwave cavity perturbation technique as a powerful tool to determine the nature and extent of coke accumulation in industrially-relevant zeolite catalysts.
format article
author B. Liu
D. R. Slocombe
J. Wang
A. Aldawsari
S. Gonzalez-Cortes
J. Arden
V. L. Kuznetsov
H. AlMegren
M. AlKinany
T. Xiao
P. P. Edwards
author_facet B. Liu
D. R. Slocombe
J. Wang
A. Aldawsari
S. Gonzalez-Cortes
J. Arden
V. L. Kuznetsov
H. AlMegren
M. AlKinany
T. Xiao
P. P. Edwards
author_sort B. Liu
title Microwaves effectively examine the extent and type of coking over acid zeolite catalysts
title_short Microwaves effectively examine the extent and type of coking over acid zeolite catalysts
title_full Microwaves effectively examine the extent and type of coking over acid zeolite catalysts
title_fullStr Microwaves effectively examine the extent and type of coking over acid zeolite catalysts
title_full_unstemmed Microwaves effectively examine the extent and type of coking over acid zeolite catalysts
title_sort microwaves effectively examine the extent and type of coking over acid zeolite catalysts
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/0c70fa21eaa04a5f8f39e91b4107c7b8
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AT drslocombe microwaveseffectivelyexaminetheextentandtypeofcokingoveracidzeolitecatalysts
AT jwang microwaveseffectivelyexaminetheextentandtypeofcokingoveracidzeolitecatalysts
AT aaldawsari microwaveseffectivelyexaminetheextentandtypeofcokingoveracidzeolitecatalysts
AT sgonzalezcortes microwaveseffectivelyexaminetheextentandtypeofcokingoveracidzeolitecatalysts
AT jarden microwaveseffectivelyexaminetheextentandtypeofcokingoveracidzeolitecatalysts
AT vlkuznetsov microwaveseffectivelyexaminetheextentandtypeofcokingoveracidzeolitecatalysts
AT halmegren microwaveseffectivelyexaminetheextentandtypeofcokingoveracidzeolitecatalysts
AT malkinany microwaveseffectivelyexaminetheextentandtypeofcokingoveracidzeolitecatalysts
AT txiao microwaveseffectivelyexaminetheextentandtypeofcokingoveracidzeolitecatalysts
AT ppedwards microwaveseffectivelyexaminetheextentandtypeofcokingoveracidzeolitecatalysts
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