AbstractA novel one-step direct synthesis of nickel embedded in an ordered mesoporous carbon catalyst (NiOMC) is done in a basic medium of nonaqueous solution by a solvent evaporation-induced self-assembly process. The NiOMC sample is characterized by a variety of analytical and spectroscopy techniques, e.g., N2 adsorption/desorption isotherm measurement, X-ray diffraction (XRD), transmission electron microscopy (TEM) and temperature-programed reduction (TPR). In this study, the NiOMC catalyst is found to exhibit superior catalytic activity for the steam reforming of ethanol (SRE), showing high hydrogen selectivity and durability. Ethanol can be completely converted at 350°C over the NiOMC catalyst. Also, the durability of the NiOMC catalys...
Hydrogen is considered one of the most promising energy vectors in order to match the current energy...
Hydrogen is considered one of the most promising energy vectors in order to match the current energy...
IR spectroscopy of low temperature adsorbed CO and CO + NO has been used to characterize the surface...
A novel one-step direct synthesis of nickel embedded in an ordered mesoporous carbon catalyst (NiOMC...
Ni- and Co-incorporated MCM-41 type mesoporous materials with Ni/Si and Co/Si molar ratios of 0.12 w...
Steam reforming of ethanol over unsupported Ni and Ni-Cu catalysts was investigated. Ethanol and the...
Nickel based catalysts derived from thermal decomposition of Ni/Mg/Al hydrotalcite-like precursors h...
Ethanol steam reforming is one of the most promising ways to produce hydrogen from biomass, and the ...
This paper describes the design of Ni/SiO<sub>2</sub> catalysts obtained from a phyllosilicate precu...
Mesoporous silica supported Ni nanoparticles have been investigated for hydrogen production from eth...
Abstract: Hydrogen production through steam reforming of ethanol was investigated with conventional ...
Hydrogen production through steam reforming of ethanol was investigated with conventional supported ...
AbstractThis paper presents the investigation of nickel-based hydrotalcite-type materials for the st...
The catalytic behavior of nanostructured catalysts based on nickel, cobalt and cerium oxide in ethan...
Ethanol steam reforming has been studied over Ni/SiO2 catalysts under a wide range of operating cond...
Hydrogen is considered one of the most promising energy vectors in order to match the current energy...
Hydrogen is considered one of the most promising energy vectors in order to match the current energy...
IR spectroscopy of low temperature adsorbed CO and CO + NO has been used to characterize the surface...
A novel one-step direct synthesis of nickel embedded in an ordered mesoporous carbon catalyst (NiOMC...
Ni- and Co-incorporated MCM-41 type mesoporous materials with Ni/Si and Co/Si molar ratios of 0.12 w...
Steam reforming of ethanol over unsupported Ni and Ni-Cu catalysts was investigated. Ethanol and the...
Nickel based catalysts derived from thermal decomposition of Ni/Mg/Al hydrotalcite-like precursors h...
Ethanol steam reforming is one of the most promising ways to produce hydrogen from biomass, and the ...
This paper describes the design of Ni/SiO<sub>2</sub> catalysts obtained from a phyllosilicate precu...
Mesoporous silica supported Ni nanoparticles have been investigated for hydrogen production from eth...
Abstract: Hydrogen production through steam reforming of ethanol was investigated with conventional ...
Hydrogen production through steam reforming of ethanol was investigated with conventional supported ...
AbstractThis paper presents the investigation of nickel-based hydrotalcite-type materials for the st...
The catalytic behavior of nanostructured catalysts based on nickel, cobalt and cerium oxide in ethan...
Ethanol steam reforming has been studied over Ni/SiO2 catalysts under a wide range of operating cond...
Hydrogen is considered one of the most promising energy vectors in order to match the current energy...
Hydrogen is considered one of the most promising energy vectors in order to match the current energy...
IR spectroscopy of low temperature adsorbed CO and CO + NO has been used to characterize the surface...