We evaluated dry reforming of methane in a tubular fixed-bed reactor at various reaction temperatures from 923 to 973 K using different reactant compositions over 10 % Ni/Al2O3 catalyst prepared by a wet impregnation method. Both NiO and NiAl2O4 phases were formed on the catalyst surface during calcination, and the 10 % Ni/Al2O3 catalyst possessed high surface area of 106.36 m2 g-1 with fine metal dispersion. The low activation energy observed for formation of NiAl2O4 phase during calcination indicated strong interaction between the NiO form and the c-Al2O3 support. The NiO phase was completely reduced to metallic Ni0 form via H2 reduction. The conversions of CO2 and CH4 increased noticeably with increasing CO2 partial pressure, and the H2/...
The importance of biogas was evidenced by the dry reforming reaction using a nickel catalyst support...
In the present study, syngas production from methane dry reforming over 15wt%Ni/85%CaFe2O4 catalyst ...
In this study, the potential of dry reforming reaction over CaFe2O4 supported Ni and Co catalysts we...
The influence of operating conditions including reactant partial pressure and reaction temperature o...
Dry reforming reaction involves reaction between methane, major component of natural gas, and carbon...
Dry reforming reaction involves reaction between methane, major component of natural gas, and carbon...
Increased concerns on anthropogenic greenhouse gas emissions have renewed interest in the CO2 (dry) ...
In this study, the potential of dry reforming reaction over CaFe2O4 supported Ni and Co catalysts we...
In this study, the potential of dry reforming reaction over CaFe2O4 supported Ni and Co catalysts we...
Reforming of methane with carbon dioxide has recently received an increasing interest since it has s...
Applicability of using Dry Reforming of Methane (DRM) using low-cost Ni-based catalysts instead of C...
Applicability of using Dry Reforming of Methane (DRM) using low-cost Ni-based catalysts instead of C...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Highly stable Ni catalysts with varying Ni contents up to 50 mol% originating from hydrotalcite-like...
The importance of biogas was evidenced by the dry reforming reaction using a nickel catalyst support...
In the present study, syngas production from methane dry reforming over 15wt%Ni/85%CaFe2O4 catalyst ...
In this study, the potential of dry reforming reaction over CaFe2O4 supported Ni and Co catalysts we...
The influence of operating conditions including reactant partial pressure and reaction temperature o...
Dry reforming reaction involves reaction between methane, major component of natural gas, and carbon...
Dry reforming reaction involves reaction between methane, major component of natural gas, and carbon...
Increased concerns on anthropogenic greenhouse gas emissions have renewed interest in the CO2 (dry) ...
In this study, the potential of dry reforming reaction over CaFe2O4 supported Ni and Co catalysts we...
In this study, the potential of dry reforming reaction over CaFe2O4 supported Ni and Co catalysts we...
Reforming of methane with carbon dioxide has recently received an increasing interest since it has s...
Applicability of using Dry Reforming of Methane (DRM) using low-cost Ni-based catalysts instead of C...
Applicability of using Dry Reforming of Methane (DRM) using low-cost Ni-based catalysts instead of C...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Highly stable Ni catalysts with varying Ni contents up to 50 mol% originating from hydrotalcite-like...
The importance of biogas was evidenced by the dry reforming reaction using a nickel catalyst support...
In the present study, syngas production from methane dry reforming over 15wt%Ni/85%CaFe2O4 catalyst ...
In this study, the potential of dry reforming reaction over CaFe2O4 supported Ni and Co catalysts we...