Summary: The coking issue is the main challenge for dry reforming of methane (DRM) over Ni-based catalysts. Herein, we excavate the reasons for the enhanced coking resistance of the bounded Ni over the free state Ni in Ni/γ-Al2O3 catalysts for DRM. Rational metal-support interaction of the bounded Ni would facilitate desorption of CO, thus suppressing CO disproportionation and decreasing carbon deposition. The higher activity of the bounded Ni is ascribed to better methane cracking ability, stronger adsorption, and activation of CO2 by forming polydentate carbonate. The better activation of CO2 over the bounded Ni would also contribute to the gasification of formed coke. We gain an insight into the anti-coking mechanism of DRM determined by...
Fine-tuning of materials properties, particularly the catalytic properties, through innovative synth...
Recently, with the rapid development of human society, meeting energy demand and controlling climate...
Dry reforming of methane (DRM) is an attractive route to utilize CO2 as a chemical feedstock with wh...
Two major green house gases (CO2 and CH4) can be converted into useful synthetic gas (H2 and CO) dur...
Carbon capture and utilization (CCU) can be more advantageous than carbon capture and storage (CCS)....
The dependence of the catalytic activity and coke resistance of Ni-based catalysts on the support ty...
A steady increase in atmospheric carbon dioxide (CO2) and methane concentrations in recent decades h...
This work studied the effect of interaction between active metal species (Ni and Ni-Co species) and ...
In recent times, the dry reforming of methane has received significant interest as an alternative pr...
Ni/Al2O3, Co/Al2O3 and bimetallic Ni(Co)/Al2O3 catalysts were prepared using an impregnation method ...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Master's thesis in Petroleum engineeringRecently there has been renewed attention in dry reforming o...
By introducing Pt atoms into the surface of reduced hydrotalcite (HT)-derived nickel (Ni/HT) catalys...
CO2 reforming of methane is an effective route for carbon dioxide recycling to valuable syngas. Howe...
Ni-CeO2 is a highly efficient, stable and non-expensive catalyst for methane dry reforming at relati...
Fine-tuning of materials properties, particularly the catalytic properties, through innovative synth...
Recently, with the rapid development of human society, meeting energy demand and controlling climate...
Dry reforming of methane (DRM) is an attractive route to utilize CO2 as a chemical feedstock with wh...
Two major green house gases (CO2 and CH4) can be converted into useful synthetic gas (H2 and CO) dur...
Carbon capture and utilization (CCU) can be more advantageous than carbon capture and storage (CCS)....
The dependence of the catalytic activity and coke resistance of Ni-based catalysts on the support ty...
A steady increase in atmospheric carbon dioxide (CO2) and methane concentrations in recent decades h...
This work studied the effect of interaction between active metal species (Ni and Ni-Co species) and ...
In recent times, the dry reforming of methane has received significant interest as an alternative pr...
Ni/Al2O3, Co/Al2O3 and bimetallic Ni(Co)/Al2O3 catalysts were prepared using an impregnation method ...
Dry reforming of methane is a technique to produce syngas from biogas or CO2-rich natural gas at hig...
Master's thesis in Petroleum engineeringRecently there has been renewed attention in dry reforming o...
By introducing Pt atoms into the surface of reduced hydrotalcite (HT)-derived nickel (Ni/HT) catalys...
CO2 reforming of methane is an effective route for carbon dioxide recycling to valuable syngas. Howe...
Ni-CeO2 is a highly efficient, stable and non-expensive catalyst for methane dry reforming at relati...
Fine-tuning of materials properties, particularly the catalytic properties, through innovative synth...
Recently, with the rapid development of human society, meeting energy demand and controlling climate...
Dry reforming of methane (DRM) is an attractive route to utilize CO2 as a chemical feedstock with wh...