Ni-based catalysts supported on Mg-Al mixed oxides (Mg(Al)O) have been intensively investigated as catalysts for CH4 reforming processes (i.e., steam reforming (SMR) and dry reforming (DRM)), which are pivotal actors in the expanding H2 economy. In this review, we provide for the first time an in-depth analysis of homo- and bimetallic Ni-based catalysts supported on Mg(Al)O supports reported to date in the literature and used for SMR and DRM processes. Particular attention is devoted to the role of the synthesis protocols on the structural and morphological properties of the final catalytic materials, which are directly related to their catalytic performance. It turns out that the addition of a small amount of a second metal to Ni (bimetall...
The increased consumption and abundance of fossil fuels has led to significant greenhouse gases (GHG...
The dry reforming of methane (DRM) process has attracted research interest because of its ability to...
The increasing content of greenhouse gases (GHG’s) in earth’s atmosphere is the main reason for glob...
Ni-Mg-Al based catalysts were prepared using different preparation methods (impregnation, impregnati...
This work studied the effect of interaction between active metal species (Ni and Ni-Co species) and ...
Dry reforming of methane (DRM) is one of the more promising methods for syngas (synthetic gas) produ...
Ni-based catalysts are highly efficient in methane-reforming processes. In the particular case of me...
Previous work from our group has established Ni-Co-Mg-Al-Ox catalyst to be an active and stable cata...
Carbon dioxide reforming, or drying reforming, of methane can now be used in new applications such a...
International audienceIn this work, Mg-doped Al2O3 supports were used for the preparation of Ni cata...
Catalytic dry reforming of methane (DRM) is an attractive technology for industrial production of sy...
Methane dry reforming is one of the important routes in converting greenhouse gases methane and carb...
Methane dry reforming (DRM) was investigated over highly active Ni catalysts with low metal content ...
In order to produce valuable syngas, industrial processes of dry reforming of methane and steam refo...
Ni/Al2O3, Ni-Co/Al2O3-MgO and Ni-Co/Al2O3-MgO/Nb-Zr nanocatalysts were prepared by the sol-gel techn...
The increased consumption and abundance of fossil fuels has led to significant greenhouse gases (GHG...
The dry reforming of methane (DRM) process has attracted research interest because of its ability to...
The increasing content of greenhouse gases (GHG’s) in earth’s atmosphere is the main reason for glob...
Ni-Mg-Al based catalysts were prepared using different preparation methods (impregnation, impregnati...
This work studied the effect of interaction between active metal species (Ni and Ni-Co species) and ...
Dry reforming of methane (DRM) is one of the more promising methods for syngas (synthetic gas) produ...
Ni-based catalysts are highly efficient in methane-reforming processes. In the particular case of me...
Previous work from our group has established Ni-Co-Mg-Al-Ox catalyst to be an active and stable cata...
Carbon dioxide reforming, or drying reforming, of methane can now be used in new applications such a...
International audienceIn this work, Mg-doped Al2O3 supports were used for the preparation of Ni cata...
Catalytic dry reforming of methane (DRM) is an attractive technology for industrial production of sy...
Methane dry reforming is one of the important routes in converting greenhouse gases methane and carb...
Methane dry reforming (DRM) was investigated over highly active Ni catalysts with low metal content ...
In order to produce valuable syngas, industrial processes of dry reforming of methane and steam refo...
Ni/Al2O3, Ni-Co/Al2O3-MgO and Ni-Co/Al2O3-MgO/Nb-Zr nanocatalysts were prepared by the sol-gel techn...
The increased consumption and abundance of fossil fuels has led to significant greenhouse gases (GHG...
The dry reforming of methane (DRM) process has attracted research interest because of its ability to...
The increasing content of greenhouse gases (GHG’s) in earth’s atmosphere is the main reason for glob...