Abstract Dry reforming of methane (DRM) bears great hope for the catalytic community as well as environmentalists for its potential to convert two greenhouse gases, CH4 and CO2, together into synthetic feedstock “syngas”. The stable tetragonal zirconium yttrium oxide phase over the “Yttria‐zirconia supported Ni” catalyst (Ni/YZr) brings >70% CH4 conversion against 50% CH4 conversion over zirconia supported Ni catalyst) in 7 h time‐on‐stream (TOS). The use of the second metal oxide (MOx; M = Ho, Ga, Gd, Ba, Cs) in a small amount (4 wt%) over Ni/YZ catalyst is found to promote the catalytic activity further. Herein, we have prepared such metal‐promoted yttria‐zirconia supported Ni catalyst, employed them for DRM and characterized them with su...
DRM is one of the alternatives to produce syngas by utilizing the main greenhouse gases which are CO...
In this work, Ce, Zr, and Al are used to promote Y2O3 as supports for Ni/NiO, with the expectation t...
Dry reforming of methane was studied over Ni,Y-promoted KIT-6 ordered mesoporous silicas, prepared b...
Dry reforming of methane (DRM) has a substantial potential to provide a cost-effective process and i...
Dry reforming of methane (DRM) has important and positive environmental and industrial impacts, as i...
Dry reforming of methane (DRM) over an Ni-based catalyst is an innovative research area due to the g...
The increasing content of greenhouse gases (GHG’s) in earth’s atmosphere is the main reason for glob...
International audiencePositive environmental and technological contexts make dry methane reforming (...
International audienceYttrium-doped NiO-ZrO m catalyst was found to be novel for carbon resistance i...
:developing cost-effective nonprecious active metal-basedcatalysts for syngas (H2/CO) production via...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...
Two major green house gases (CO2 and CH4) can be converted into useful synthetic gas (H2 and CO) dur...
Methane dry reforming is one of the important routes in converting greenhouse gases methane and carb...
Methane dry reforming is one of the important routes in natural gas processing. Here, CH4 and CO2 ar...
DRM is one of the alternatives to produce syngas by utilizing the main greenhouse gases which are CO...
In this work, Ce, Zr, and Al are used to promote Y2O3 as supports for Ni/NiO, with the expectation t...
Dry reforming of methane was studied over Ni,Y-promoted KIT-6 ordered mesoporous silicas, prepared b...
Dry reforming of methane (DRM) has a substantial potential to provide a cost-effective process and i...
Dry reforming of methane (DRM) has important and positive environmental and industrial impacts, as i...
Dry reforming of methane (DRM) over an Ni-based catalyst is an innovative research area due to the g...
The increasing content of greenhouse gases (GHG’s) in earth’s atmosphere is the main reason for glob...
International audiencePositive environmental and technological contexts make dry methane reforming (...
International audienceYttrium-doped NiO-ZrO m catalyst was found to be novel for carbon resistance i...
:developing cost-effective nonprecious active metal-basedcatalysts for syngas (H2/CO) production via...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...
Methane dry reforming (MDR) is a promising process for syngas production through the valorisation of...
Two major green house gases (CO2 and CH4) can be converted into useful synthetic gas (H2 and CO) dur...
Methane dry reforming is one of the important routes in converting greenhouse gases methane and carb...
Methane dry reforming is one of the important routes in natural gas processing. Here, CH4 and CO2 ar...
DRM is one of the alternatives to produce syngas by utilizing the main greenhouse gases which are CO...
In this work, Ce, Zr, and Al are used to promote Y2O3 as supports for Ni/NiO, with the expectation t...
Dry reforming of methane was studied over Ni,Y-promoted KIT-6 ordered mesoporous silicas, prepared b...