Development of catalysts for natural gas reforming: Nickel-magnesia solid solution catalyst

Development of catalysts for natural gas reforming: Nickel-magnesia solid solution catalyst Nickel-magnesia solid solution catalyst (Ni0.03Mg0.97O) was found to have high resistance to carbon formation during CO2 reforming of methane. Although deactivation due to the oxidation of reduced Ni happened, it is easily prevented by the addition of hydrogen to the reaction gas. The amount of deposited carbon increased gradually with increase in the reaction pressure. It was also found that the addition of calcium is very effective to its inhibition. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Research on Chemical Intermediates Springer Journals

Development of catalysts for natural gas reforming: Nickel-magnesia solid solution catalyst

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Publisher
Springer Netherlands
Copyright
Copyright © 1998 by Springer
Subject
Chemistry; Catalysis; Physical Chemistry; Inorganic Chemistry
ISSN
0922-6168
eISSN
1568-5675
D.O.I.
10.1163/156856798X00230
Publisher site
See Article on Publisher Site

Abstract

Nickel-magnesia solid solution catalyst (Ni0.03Mg0.97O) was found to have high resistance to carbon formation during CO2 reforming of methane. Although deactivation due to the oxidation of reduced Ni happened, it is easily prevented by the addition of hydrogen to the reaction gas. The amount of deposited carbon increased gradually with increase in the reaction pressure. It was also found that the addition of calcium is very effective to its inhibition.

Journal

Research on Chemical IntermediatesSpringer Journals

Published: Apr 15, 2009

References

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