Among others, the light hydrocarbon (C1-C4 alkanes) dry reforming process has attracted considerable attention with increasing global oil price, for developing sustainable environmentally-compatible synthesis gas (H2/CO mixtures) production and utilisation technologies. However, the foremost advantage of immediate suitability for gas-to-liquids (GTL) fuels’ conversion has been prevented by severe carbon deposition, the main challenge that rapidly deactivates the catalyst and the attendant economic implications. As a result, the principal goal of this study was to improve the dry reforming process through two main strategies, namely: carbon-resilient catalyst design, and reactor operation. In particular, a bimetallic catalyst which is b...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
In this study the synthesis, characterization and catalytic performance of CeO2 (Ceria) supported Co...
Co/CeO2 (Co 7.5 wt.%), Ni/CeO2 (Ni 7.5 wt.%) and Co-Ni/CeO2 (Co 3.75 wt.%, Ni 3.75 wt.%) catalysts w...
Ethanol dry reforming show a high potential to become a technology used to produce alternative fuel ...
The effect of ceria promotion on Co/Al2O3 catalysts for ethanol dry reforming has been investigated ...
Hydrocarbon reforming using CO2, a greenhouse gas, as a feedstock has attracted increasing attention...
The process of carbon dioxide dry reforming to produce syngas has received a wide reception in recen...
Dry reforming reactions have important environmental and economical implications, since they can uti...
Ce-promoted and unpromoted 10%Ni/Al2O3 catalysts were prepared by co-impregnation method and evaluat...
A facile and green synthetic strategy is developed in this paper for the construction of an efficien...
The transformation of greenhouse gas, CO2 to fuels using heterogeneously catalytic processes has rec...
Increased concerns on anthropogenic greenhouse gas emissions have renewed interest in the CO2 (dry) ...
Synthesis gas is an important feed stock for the chemical and petrochemical industries to produce ma...
Dry reforming of methane (DRM) is an emerging technology as it can simultaneously serve as a prospec...
Reforming of methane with carbon dioxide has recently received an increasing interest since it has s...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
In this study the synthesis, characterization and catalytic performance of CeO2 (Ceria) supported Co...
Co/CeO2 (Co 7.5 wt.%), Ni/CeO2 (Ni 7.5 wt.%) and Co-Ni/CeO2 (Co 3.75 wt.%, Ni 3.75 wt.%) catalysts w...
Ethanol dry reforming show a high potential to become a technology used to produce alternative fuel ...
The effect of ceria promotion on Co/Al2O3 catalysts for ethanol dry reforming has been investigated ...
Hydrocarbon reforming using CO2, a greenhouse gas, as a feedstock has attracted increasing attention...
The process of carbon dioxide dry reforming to produce syngas has received a wide reception in recen...
Dry reforming reactions have important environmental and economical implications, since they can uti...
Ce-promoted and unpromoted 10%Ni/Al2O3 catalysts were prepared by co-impregnation method and evaluat...
A facile and green synthetic strategy is developed in this paper for the construction of an efficien...
The transformation of greenhouse gas, CO2 to fuels using heterogeneously catalytic processes has rec...
Increased concerns on anthropogenic greenhouse gas emissions have renewed interest in the CO2 (dry) ...
Synthesis gas is an important feed stock for the chemical and petrochemical industries to produce ma...
Dry reforming of methane (DRM) is an emerging technology as it can simultaneously serve as a prospec...
Reforming of methane with carbon dioxide has recently received an increasing interest since it has s...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
In this study the synthesis, characterization and catalytic performance of CeO2 (Ceria) supported Co...
Co/CeO2 (Co 7.5 wt.%), Ni/CeO2 (Ni 7.5 wt.%) and Co-Ni/CeO2 (Co 3.75 wt.%, Ni 3.75 wt.%) catalysts w...