Effect of Catalyst Composition and Process Conditions on the Catalytic Efficiency of Cobalt Ferrite in the Decomposition of Nitrogen(I) Oxide
A study is performed of the procedure for preparing a catalyst of the decomposition of nitrogen(I) oxide. Decomposition catalysts were prepared through the mechanochemical synthesis of cobalt ferrite from a mixture of iron and cobalt oxalates. It is established that preliminary mechanochemical activ...
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Veröffentlicht in: | Russian Journal of Physical Chemistry A 2021-10, Vol.95 (10), p.2014-2019 |
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Hauptverfasser: | , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A study is performed of the procedure for preparing a catalyst of the decomposition of nitrogen(I) oxide. Decomposition catalysts were prepared through the mechanochemical synthesis of cobalt ferrite from a mixture of iron and cobalt oxalates. It is established that preliminary mechanochemical activation of the initial components in a roller ring vibration mill allows the temperature of cobalt ferrite synthesis to be reduced to 300°C, yielding a product with a more developed specific surface area and porous structure. The catalytic properties of cobalt ferrite with different ratios of the main components (CoO : Fe
2
O
3
= 0.7–1.3) are studied in the temperature range of 100–500°C. It is shown that raising the content of CoO in the composition of cobalt ferrite to a ratio of 1.3 lowers the temperature of the 50% decomposition of N
2
O from 420 to 370°C. The effect water vapor, O
2
, and H
2
have on the reaction is revealed. The effect pressure and temperature have on the activity of a catalyst based on cobalt ferrite is established for the decomposition of N
2
O. |
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ISSN: | 0036-0244 1531-863X |
DOI: | 10.1134/S0036024421100058 |