CeO2 and binary La-Ce oxides, with different La/Ce atomic ratios (1:4; 1:1; 4:1), were synthesized using sol-gel method in the presence of citric acid in ammonia solution, at pH~9, and Ni (10wt%) was added by wetness impregnation method. The physical-chemical properties, catalytic activity and long-run stability of the so prepared catalysts were evaluated in DRM reaction. Characterizations of both fresh and spent catalysts were carried out using low-temperature N2 adsorption, XRD, TGA, TPR, Raman and TEM analyses. The DRM gradient catalytic tests performed in the range of 400-800°C revealed higher catalytic conversions for Ni/La2O3-CeO2 catalysts, especially for those with La/Ce ratio 1:4 and 1:1. The stable conversions of CH4 and CO2 (long...
Nickel catalysts supported on homemade CeO2 oxide were prepared by two procedures intending to achie...
Dry reforming of methane with carbon dioxide (DRMC) has received great attention,as the process can ...
none13siNi-based catalysts are selective in the hydrogenation of CO2 to CH4 but their activity and s...
Methane dry reforming (MDR) allows the transformation of carbon dioxide and methane, the two main gr...
Methane dry reforming (MDR) allows the transformation of carbon dioxide and methane, the two main gr...
Dry reforming of methane (DRM) is an emerging technology as it can simultaneously serve as a prospec...
In the study presented herein, nickel catalysts supported on CeO2 and, for the first time in the lit...
Methane dry reforming (MDR) allows the transformation of carbon dioxide and methane, the two main gr...
Dry reforming of methane (DRM) was investigated using Ni–M oxide catalysts prepared by solution comb...
Nickel (Ni) has been recognized as a low-cost and an efficient catalyst for hydrogen production from...
-The catalytic performances of Ni/CeO2–Al2O3 catalysts for the dry reforming of CH4 (DRM) were inves...
Fine-tuning of materials properties, particularly the catalytic properties, through innovative synth...
The chemical transformation of CO2 into chemicals is a promising and interesting strategy to mitigat...
Series of Ni catalysts supported on alumina and mixed xCeO2-Al2O3 oxides with different CeO2 content...
Mesoporous Ni/CeO2 catalysts of variable loadings were prepared using in-situ doping and impregnatio...
Nickel catalysts supported on homemade CeO2 oxide were prepared by two procedures intending to achie...
Dry reforming of methane with carbon dioxide (DRMC) has received great attention,as the process can ...
none13siNi-based catalysts are selective in the hydrogenation of CO2 to CH4 but their activity and s...
Methane dry reforming (MDR) allows the transformation of carbon dioxide and methane, the two main gr...
Methane dry reforming (MDR) allows the transformation of carbon dioxide and methane, the two main gr...
Dry reforming of methane (DRM) is an emerging technology as it can simultaneously serve as a prospec...
In the study presented herein, nickel catalysts supported on CeO2 and, for the first time in the lit...
Methane dry reforming (MDR) allows the transformation of carbon dioxide and methane, the two main gr...
Dry reforming of methane (DRM) was investigated using Ni–M oxide catalysts prepared by solution comb...
Nickel (Ni) has been recognized as a low-cost and an efficient catalyst for hydrogen production from...
-The catalytic performances of Ni/CeO2–Al2O3 catalysts for the dry reforming of CH4 (DRM) were inves...
Fine-tuning of materials properties, particularly the catalytic properties, through innovative synth...
The chemical transformation of CO2 into chemicals is a promising and interesting strategy to mitigat...
Series of Ni catalysts supported on alumina and mixed xCeO2-Al2O3 oxides with different CeO2 content...
Mesoporous Ni/CeO2 catalysts of variable loadings were prepared using in-situ doping and impregnatio...
Nickel catalysts supported on homemade CeO2 oxide were prepared by two procedures intending to achie...
Dry reforming of methane with carbon dioxide (DRMC) has received great attention,as the process can ...
none13siNi-based catalysts are selective in the hydrogenation of CO2 to CH4 but their activity and s...