Studies on Carbon Deposition in CO2Reforming of CH4over Nickel–Magnesia Solid Solution Catalysts
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Elsevier BV
Reference42 articles.
1. How to reduce the greenhouse effect, and a few other questions concerning catalysis
2. New Uses of Methane
3. Catalysis Science and Technology;Rostrup-Nielsen,1984
4. The role of catalyst support on the activity of nickel for reforming methane with CO2
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