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Please use this identifier to cite or link to this item: http://hdl.handle.net/1959.14/26413

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Title
The storage of nitrogen oxides on alumina-supported barium oxide
Related
Catalysis today, Vol. 73, Issue 3-4, p.271-278
DOI
10.1016/S0920-5861(02)00010-X
Publisher
Elsevier
Date
2002
Author/Creator
Cant, Noel W
Author/Creator
Patterson, Michael J
Description
The storage and release of NO₂ on alumina-supported barium oxide has been studied with particular attention to the stoichiometry of the two processes. At 400 °C the storage process is characterised by a short period of complete uptake, possibly as nitrito or nitro species, followed by a slower partial uptake in which approximately one NO is released for every three NO₂ lost. The latter reaction appears to supply the oxygen necessary to store NO₂ as nitrate ions. Molecular O₂ has little direct involvement even if in large excess. The second storage reaction also occurs, but to a much lesser extent, with Al₂O₃ alone. During temperature programmed desorption, release of NOₓ from Al₂O₃ peaks at ~430 °C with evolution of NO₂ and some O₂. Release from BaO/Al₂O₃ exhibits an additional peak near 520 °C corresponding to formation of NO and a higher O₂ concentration. The NO may arise from NO₂ since BaO/Al₂O₃ has activity for NO₂ decomposition by 500 °C. Although CO₂ at low concentration is rapidly taken up by BaO/Al₂O₃ at 400 °C it is displaced by NO₂ and does not interfere with storage. Thermodynamic calculations show that the formation of Ba(NO₃)₂ by the reaction of NO₂ with bulk BaCO₃ under the conditions used here is more favourable above 380 °C if NO is evolved than if O₂ is consumed.
Description
8 page(s)
Subject Keyword
NO₂
Subject Keyword
storage catalysts
Subject Keyword
barium oxide
Subject Keyword
barium carbonate
Subject Keyword
aluminium oxide
Subject Keyword
decomposition of stored nitrate
Resource Type
journal article
Organisation
Macquarie University. Dept. of Chemistry and Biomolecular Sciences

Identifier
http://hdl.handle.net/1959.14/26413
Identifier
ISSN:1873-4308
Identifier
mq-rm-2002014951
Language
eng
Reviewed
Reviewed
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Subject
"Catalysis today"
 
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