Abstract:
The nonoxidative coupling of methane to hydrocarbons C2 and above at 475–555 K by UV activation with hydrogen removing from the reaction zone through a palladium membrane increased CH4 conversion.
Document Type:
Article
Language: English
Citation:
N. L. Basov, M. M. Ermilova, N. V. Orekhova, I. A. Oreshkin, A. B. Yaroslavtsev, “Low temperature methane coupling in a Pd-based membrane reactor with UV activation”, Mendeleev Commun., 23:2 (2013), 69–70
Linking options:
https://www.mathnet.ru/eng/mendc2615
https://www.mathnet.ru/eng/mendc/v23/i2/p69
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A.A. Lytkina, N.V. Orekhova, M.M. Ermilova, A.B. Yaroslavtsev, “The influence of the support composition and structure (MKhZr1-XO2-δ) of bimetallic catalysts on the activity in methanol steam reforming”, International Journal of Hydrogen Energy, 43:1 (2018), 198
Aleksandra A. Lytkina, Natalia V. Orekhova, Margarita M. Ermilova, Sergey V. Belenov, Vladimir E. Guterman, Mikhail N. Efimov, Andrey B. Yaroslavtsev, “Bimetallic carbon nanocatalysts for methanol steam reforming in conventional and membrane reactors”, Catalysis Today, 268 (2016), 60
A.A. Lytkina, N.A. Zhilyaeva, M.M. Ermilova, N.V. Orekhova, A.B. Yaroslavtsev, “Influence of the support structure and composition of Ni–Cu-based catalysts on hydrogen production by methanol steam reforming”, International Journal of Hydrogen Energy, 40:31 (2015), 9677
V. L. Kozhevnikov, I. A. Leonidov, M. V. Patrakeev, “Ceramic membranes with mixed conductivity and their application”, Russian Chem. Reviews, 82:8 (2013), 772–782