4.5 Article

Catalytic Decomposition of 2% Methanol in Methane over Metallic Catalyst by Fixed-Bed Catalytic Reactor

期刊

ENERGIES
卷 14, 期 8, 页码 -

出版社

MDPI
DOI: 10.3390/en14082220

关键词

alloys; carbon nanofiber; catalyst; clean energy; premixed gas

资金

  1. Karlstad University
  2. Universiti Teknologi PETRONAS

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The study focused on the structure and performance of promoted Ni/Al2O3 with Cu using thermocatalytic decomposition (TCD) of a CH4 mixture. TPR analysis showed that Cu enhanced the reducibility of the catalyst. The impregnation of 10% Cu on Cat-1 drastically improved the catalytic performance and sustained activity for 6 hours.
The structure and performance of promoted Ni/Al2O3 with Cu via thermocatalytic decomposition (TCD) of CH4 mixture (2% CH3OH) were studied. Mesoporous Cat-1 and Cat-2 were synthesized by the impregnation method. The corresponding peaks of nickel oxide and copper oxide in the XRD showed the presence of nickel and copper oxides as a mixed alloy in the calcined catalyst. Temperature program reduction (TPR) showed that Cu enhanced the reducibility of the catalyst as the peak of nickel oxide shifted toward a lower temperature due to the interaction strength of the metal particles and support. The impregnation of 10% Cu on Cat-1 drastically improved the catalytic performance and exhibited 68% CH4 conversion, and endured its activity for 6 h compared with Cat-1, which deactivated after 4 h. The investigation of the spent carbon showed that various forms of carbon were obtained as a by-product of TCD, including graphene fiber (GF), carbon nanofiber (CNF), and multi-wall carbon nanofibers (MWCNFs) on the active sites of Cat-2 and Cat-1, following various kinds of growth mechanisms. The presence of the D and G bands in the Raman spectroscopy confirmed the mixture of amorphous and crystalline morphology of the deposited carbon.

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