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The catalyst for decomposition of methane to carbon nanofibers and hydrogen was prepared using the solution combustion technique. Dynamics of change of temperature of solution (gel) during ...
of Physics: Conference Series 1942 (2021) 012038 doi:10.1088/1742-6596/1942/1/012038 Production of Hydrogen and Carbon Nanofibers by the Catalytic Decomposition of Methane over Ni-Containing Catalysts 1,2 2 2 ...
loadings, supported over magnesia and titania are investigated for hydrogen production via catalytic decomposition of methane . The catalytic activity and stability results revealed that magnesia supported ...
hydrogen and carbon nanofibers production by methane decomposition over nickel-alumina catalysts , ,† * * ** * Nima Bayat , Mehran Rezaei , and Fereshteh Meshkani *Catalyst and Advanced Materials Research ...
The reaction of methane decomposition is an endothermic process that produces hydrogen without any impurities as a gas product and carbon nanotubes/ carbon nanofibers as a solid product. In this study ...
;grey’ or ‘blue’ hydrogen via steam methane reforming, where waste carbon dioxide is produced. Thermal pyrolysis is conducted at higher temperatures, but catalytic decomposition ...
, preferential oxidation, or methanation ) are needed to remove them from the gas product.4,5 Alternatively, the catalytic decomposition of methane (CDM) has attracted much attention.6,7 It produces hydrogen free ...
of hydrogen and carbon nanofibers is strongly dependent on Ni loading. It is found that 20 wt% Ni/HY catalyst showed higher hydrogen yield over the other loadings. Catal Lett (2007) 118:139–145 DOI 10.1007 ...
in the process of the catalytic decomposition of methane (CDM). In this process, carbon is sequestered in the form of stable and valuable solid carbon nanotubes (CNTs) or carbon nanofibers (CNFs), whereas COx‐free ...
work, decomposition of methane into COX free hydrogen and carbon nanofiber were studied over the bimetallic catalysts. The materials were prepared by wet impregnation method and analyzed by BET, TGA, XRD ...
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