Carbon dioxide and/or dry methane reforming serves as an effective pathway to mitigate these greenhouse gases. This work evaluates different oxide supports including alumina, Y-zeolite and H-ZSM-5 zeolite for the catalysis of dry reforming methane with Nickel (Ni). The composite catalysts were prepared by impregnating the supports with Ni (5%) and followed by calcination. The zeolite supported catalysts exhibited more reducibility and basicity compared to the alumina supported catalysts, this was assessed with temperature programmed reduction using hydrogen and desorption using carbon dioxide. The catalytic activity, in terms of CH4 conversion, indicated that 5 wt% Ni supported on alumina exhibited higher CH4 conversion (80.5%) than when su...
The catalytic activity of carriers: θ‒Al2O3, γ‒Al2O3, 5A, 4A, 3A and 13X and the oxides of metals of...
International audienceThis study aimed to investigate the effect of carbon derived from glucose (C) ...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...
CO2 utilisation is becoming an appealing topic in catalysis science due to the urgent need to deal w...
International audienceIn this work, Mg-doped Al2O3 supports were used for the preparation of Ni cata...
The importance of biogas was evidenced by the dry reforming reaction using a nickel catalyst support...
Carbon capture and utilization (CCU) can be more advantageous than carbon capture and storage (CCS)....
Development of a highly efficient and coke-resistant, nickel based nano-catalyst in the carbon dioxi...
Methane dry reforming is one of the important routes in converting greenhouse gases methane and carb...
Recently, with the rapid development of human society, meeting energy demand and controlling climate...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...
Consuming two major greenhouse gases, carbon dioxide (CO2) and methane (CH4), to produce synthesis g...
Consuming two major greenhouse gases, carbon dioxide (CO2) and methane (CH4), to produce synthesis g...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...
The increasing content of greenhouse gases (GHG’s) in earth’s atmosphere is the main reason for glob...
The catalytic activity of carriers: θ‒Al2O3, γ‒Al2O3, 5A, 4A, 3A and 13X and the oxides of metals of...
International audienceThis study aimed to investigate the effect of carbon derived from glucose (C) ...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...
CO2 utilisation is becoming an appealing topic in catalysis science due to the urgent need to deal w...
International audienceIn this work, Mg-doped Al2O3 supports were used for the preparation of Ni cata...
The importance of biogas was evidenced by the dry reforming reaction using a nickel catalyst support...
Carbon capture and utilization (CCU) can be more advantageous than carbon capture and storage (CCS)....
Development of a highly efficient and coke-resistant, nickel based nano-catalyst in the carbon dioxi...
Methane dry reforming is one of the important routes in converting greenhouse gases methane and carb...
Recently, with the rapid development of human society, meeting energy demand and controlling climate...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...
Consuming two major greenhouse gases, carbon dioxide (CO2) and methane (CH4), to produce synthesis g...
Consuming two major greenhouse gases, carbon dioxide (CO2) and methane (CH4), to produce synthesis g...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...
The increasing content of greenhouse gases (GHG’s) in earth’s atmosphere is the main reason for glob...
The catalytic activity of carriers: θ‒Al2O3, γ‒Al2O3, 5A, 4A, 3A and 13X and the oxides of metals of...
International audienceThis study aimed to investigate the effect of carbon derived from glucose (C) ...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...