Highly stable Ni catalysts with varying Ni contents up to 50 mol% originating from hydrotalcite-like precursors were applied in the dry reforming of methane at 800 and 900 °C. The integral specific rate of methane conversion determined after 10 h on stream was 3.8 mmol s-1 gcat-1 at 900 °C. Due to the outstanding high activity, a catalyst mass of just 10 mg had to be used to avoid operating the reaction in thermodynamic equilibrium. The resulting WHSV was as high as 1.44 × 106 ml gcat-1 h-1. The observed axial temperature distribution with a pronounced cold spot was analyzed by computational fluid dynamics simulations to verify the strong influence of this highly endothermic reaction. Transmission electron microscopy and temperature-program...
International audienceThis study aimed to investigate the effect of carbon derived from glucose (C) ...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Commercially viable Ni-based heterogeneous catalysts have immense potential for the application in r...
Highly stable Ni catalysts with varying Ni contents up to 50 mol% originating from hydrotalcite-like...
The influence of redox dynamics of a Ni/MgAl oxide catalyst for dry reforming of methane (DRM) at hi...
Catalytic dry reforming of methane (DRM) is an attractive technology for industrial production of sy...
CO2 utilisation is becoming an appealing topic in catalysis science due to the urgent need to deal w...
Recently, with the rapid development of human society, meeting energy demand and controlling climate...
Ni/Al2O3, Co/Al2O3 and bimetallic Ni(Co)/Al2O3 catalysts were prepared using an impregnation method ...
Highly active and coking-resistant Ni catalysts suited for the dry reforming of CH4-rich gases (70 v...
Carbon capture and utilization (CCU) can be more advantageous than carbon capture and storage (CCS)....
Master's thesis in Petroleum engineeringRecently there has been renewed attention in dry reforming o...
This study focuses on the synthetic approach influence in morphostructural features and catalytic p...
Carbon formation and sintering remain the main culprits regarding catalyst deactivation in the dry a...
Bimetallic 5%Ni–10%Co/Al2O3 catalyst was synthesized using impregnation method and evaluated for met...
International audienceThis study aimed to investigate the effect of carbon derived from glucose (C) ...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Commercially viable Ni-based heterogeneous catalysts have immense potential for the application in r...
Highly stable Ni catalysts with varying Ni contents up to 50 mol% originating from hydrotalcite-like...
The influence of redox dynamics of a Ni/MgAl oxide catalyst for dry reforming of methane (DRM) at hi...
Catalytic dry reforming of methane (DRM) is an attractive technology for industrial production of sy...
CO2 utilisation is becoming an appealing topic in catalysis science due to the urgent need to deal w...
Recently, with the rapid development of human society, meeting energy demand and controlling climate...
Ni/Al2O3, Co/Al2O3 and bimetallic Ni(Co)/Al2O3 catalysts were prepared using an impregnation method ...
Highly active and coking-resistant Ni catalysts suited for the dry reforming of CH4-rich gases (70 v...
Carbon capture and utilization (CCU) can be more advantageous than carbon capture and storage (CCS)....
Master's thesis in Petroleum engineeringRecently there has been renewed attention in dry reforming o...
This study focuses on the synthetic approach influence in morphostructural features and catalytic p...
Carbon formation and sintering remain the main culprits regarding catalyst deactivation in the dry a...
Bimetallic 5%Ni–10%Co/Al2O3 catalyst was synthesized using impregnation method and evaluated for met...
International audienceThis study aimed to investigate the effect of carbon derived from glucose (C) ...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Commercially viable Ni-based heterogeneous catalysts have immense potential for the application in r...