The effect of varying the calcination temperature from 773 to 1073 K was examined on catalysts prepared from Pd@CeO2, core\u2013shell nanoparticles adsorbed on silane-functionalized \u3b3-Al2O3 (Pd@CeO2/Si\u2013Al2O3). Calcining to higher temperatures increased rates per gram catalyst for the methane-oxidation reaction significantly. The Pd@CeO2/Si\u2013Al2O3 catalyst calcined to 773 K was unstable for methane-steam reforming (MSR) due to deep reduction of the catalyst while the catalyst calcined at 1073 K showed reasonable stable rates. CO adsorption, monitored using volumetric uptakes and FTIR, indicated adsorption on the Pd was suppressed following reduction at 673 K in H2 when the catalyst had been calcined at only 773 K, but not after ...
The enhanced rates of reduction and re-oxidation of ceria in the presence of Pd, was investigated on...
In this paper, a comparative investigation of the catalytic performances of Pd@TiO2 and Pd@CeO2, cor...
Catalytic oxidation is the most effective technology to control methane emissions from both mobile a...
The influence of water vapor on methane catalytic combustion was studied over a Pd@CeO2/Si-Al2O3 cat...
The effects of calcination temperature on Pd/γ-alumina catalysts were studied using a variety of tec...
The effects of calcination temperature on Pd/γ-alumina catalysts were studied using a variety of tec...
There is a critical need for improved methane-oxidation catalysts to both reduce emissions of methan...
Catalytic partial oxidation (CPO) is considered to be a promising route to produce synthesis gas fro...
We report on the synthesis and testing of active and stable nano-catalysts for methane oxidation. Th...
Interactions between metal catalysts and oxide supports have been known to be important in modifying...
We report on the synthesis and testing of active and stable nano-catalysts for methane oxidation. Th...
There is a critical need for improved methane-oxidation catalysts to both reduce emissions of methan...
Ceria-supported Pd nanoparticles are known to be efficient catalysts for vehicle exhaust purificatio...
Interactions between metal catalysts and oxide supports have been known to be important in modifying...
The effect of calcination temperature for the support and catalyst on the catalytic properties of th...
The enhanced rates of reduction and re-oxidation of ceria in the presence of Pd, was investigated on...
In this paper, a comparative investigation of the catalytic performances of Pd@TiO2 and Pd@CeO2, cor...
Catalytic oxidation is the most effective technology to control methane emissions from both mobile a...
The influence of water vapor on methane catalytic combustion was studied over a Pd@CeO2/Si-Al2O3 cat...
The effects of calcination temperature on Pd/γ-alumina catalysts were studied using a variety of tec...
The effects of calcination temperature on Pd/γ-alumina catalysts were studied using a variety of tec...
There is a critical need for improved methane-oxidation catalysts to both reduce emissions of methan...
Catalytic partial oxidation (CPO) is considered to be a promising route to produce synthesis gas fro...
We report on the synthesis and testing of active and stable nano-catalysts for methane oxidation. Th...
Interactions between metal catalysts and oxide supports have been known to be important in modifying...
We report on the synthesis and testing of active and stable nano-catalysts for methane oxidation. Th...
There is a critical need for improved methane-oxidation catalysts to both reduce emissions of methan...
Ceria-supported Pd nanoparticles are known to be efficient catalysts for vehicle exhaust purificatio...
Interactions between metal catalysts and oxide supports have been known to be important in modifying...
The effect of calcination temperature for the support and catalyst on the catalytic properties of th...
The enhanced rates of reduction and re-oxidation of ceria in the presence of Pd, was investigated on...
In this paper, a comparative investigation of the catalytic performances of Pd@TiO2 and Pd@CeO2, cor...
Catalytic oxidation is the most effective technology to control methane emissions from both mobile a...