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methanation (9) 9
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Industrial & Engineering Chemistry Research, ISSN 0888-5885, 04/2016, Volume 55, Issue 16, pp. 4451 - 4460
Composite oxide supported Ni-based catalysts were prepared by a wet impregnation technique and applied to the methanation of carbon dioxide. The composite... 
Journal Article
Catalysis Today, ISSN 0920-5861, 04/2018, Volume 304, pp. 181 - 189
[Display omitted] •CO2 methanation was studied in a high throughput reactor, by using mixed oxide supported Ni.•An optimal amount of CeO2 (15% wt) allows... 
Nickel | Reducibility | CO2 methanation | Mixed oxide | Textural improvement | CeO2 promoter | methanation | promoter | CeO | PERFORMANCE | CHEMISTRY, PHYSICAL | ENGINEERING, CHEMICAL | NICKEL-CATALYSTS | NI/AL2O3 CATALYSTS | GAS | CHEMISTRY, APPLIED | PROMOTER | CARBON-DIOXIDE
Journal Article
Fuel (Guildford), ISSN 0016-2361, 08/2018, Volume 225, pp. 230 - 242
[Display omitted] •Ni/Al hydrotalcite-derived catalyst testing at 1 atm and 270–390 °C.•Good catalyst stability over time.•Investigation of intrinsic kinetics... 
Carbon dioxide methanation | Intrinsic kinetics | Ni/Al hydrotalcite catalyst | Power-to-gas
Journal Article
ISSN 2044-4753, 7/2019, Volume 9, Issue 15, pp. 423 - 435
When using undiluted H 2 + CO 2 feeds in stoichiometric ratios, it is necessary to use a reactor outlet temperature below about 320 °C in CO 2 methanation in... 
Journal Article
ISSN 2044-4753, 3/2020, Volume 1, Issue 6, pp. 192 - 1913
Metal oxide supported Ni-based catalysts represent intensively studied materials for CO 2 methanation due to their relatively high activity, methane... 
Journal Article
ACS Sustainable Chemistry & Engineering, ISSN 2168-0485, 08/2017, Volume 5, Issue 8, pp. 7393 - 7400
Fe2O3-CNT samples are studied for the room-temperature electrocatalytic synthesis of NH3 from H2O and N2 in a gas–liquid–solid three-phase reactor. A 30 wt %... 
synthesis | Electrocatalysis | Fe/CNT | activation | Electrocatalytic reactor
Journal Article
CATALYSIS SCIENCE & TECHNOLOGY, ISSN 2044-4753, 03/2020, Volume 10, Issue 6, pp. 1902 - 1913
Metal oxide supported Ni-based catalysts represent intensively studied materials for CO2 methanation due to their relatively high activity, methane selectivity... 
NI-AL2O3 CATALYSTS | HYDROGENATION | REMOVAL | LAYERED DOUBLE HYDROXIDES | NICKEL | TEMPERATURE | PERFORMANCE | GAS | CHEMISTRY, PHYSICAL | GAMMA-AL2O3 | DEACTIVATION
Journal Article
Physical chemistry chemical physics : PCCP, ISSN 1463-9076, 2020
Hydrotalcite-derived Ni and Fe-promoted hydrotalcite-derived Ni catalysts were found to outperform industrial catalysts in the CO2 methanation reaction,... 
Journal Article
Catalysis science & technology, ISSN 2044-4753, 01/2019, Volume 9, Issue 15, pp. 4023 - 4035
When using undiluted H2 + CO2 feeds in stoichiometric ratios, it is necessary to use a reactor outlet temperature below about 320 °C in CO2 methanation in... 
Equilibrium conditions | Methanation | Temperature | Deactivation | Catalysts | Carbon dioxide | Iron | Nickel | Selectivity | Catalysis | Natural gas | Low temperature
Journal Article
Studies in Surface Science and Catalysis, ISSN 0167-2991, 2019, Volume 178, pp. 85 - 103
The power to gas (P2G) process has the potential to solve long-term and large-scale energy storage problems as well as reduce CO emissions. P2G involves CO... 
Hydrotalcite | Deactivation | Power to gas | Ni-based catalysts | Bimetallic catalysts | methanation
Journal Article
CATALYSIS SCIENCE & TECHNOLOGY, ISSN 2044-4753, 08/2019, Volume 9, Issue 15, pp. 4023 - 4035
When using undiluted H-2 + CO2 feeds in stoichiometric ratios, it is necessary to use a reactor outlet temperature below about 320 degrees C in CO2 methanation... 
SUPPORTED NI | HYDROGENATION | SPECTROSCOPY | NANOCATALYSTS | STABILITY | NICKEL-CATALYST | CHEMISTRY, PHYSICAL | CARBON-DIOXIDE | ALUMINA | NATURAL-GAS
Journal Article
Physical chemistry chemical physics : PCCP, 04/2020
Hydrotalcite-derived Ni and Fe-promoted hydrotalcite-derived Ni catalysts were found to outperform industrial catalysts in the CO2 methanation reaction,... 
Journal Article
Energy technology (Weinheim, Germany), ISSN 2194-4288, 06/2018, Volume 6, Issue 6, pp. 1196 - 1207
Journal Article
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