A series of 3 wt% Ru embedded on ordered mesoporous carbon (OMC) catalysts with different pore sizes were prepared by autoreduction between ruthenium precursors and carbon sources at 1123 K. Ru nanoparticles were embedded on the carbon walls of OMC. Characterization technologies including power X-ray diffraction (XRD), nitrogen adsorption-desorption, transmission electron microscopy (TEM), and hydrogen temperature-programmed reduction (H2-TPR) were used to scrutinize the catalysts. The catalyst activity for Fischer-Tropsch synthesis (FTS) was measured in a fixed bed reactor. It was revealed that 3 wt% Ru-OMC catalysts exhibited highly ordered mesoporous structure and large surface area. Compared with the catalysts with smaller pores, the ca...
A Ru/\u3b3-Al2O3 (0.87% wt./wt.) catalyst has been studied for the Fischer-Tropsch synthesis (FTS) a...
Ru catalysts supported on different mesoporous silicas, MCM-41, MCM-48, SBA-15 and KIT-6, were appli...
We report here a thermal reduction method for preparing Ru catalysts supported on a carbon substrate...
Two novel Ru Fischer–Tropsch (FT) catalysts were made that were supported on the inside of two hollo...
Two novel Ru Fischer–Tropsch (FT) catalysts were made that were supported on the inside of two hollo...
Two novel Ru Fischer–Tropsch (FT) catalysts were made that were supported on the inside of two hollo...
Supported ruthenium based materials are active for the catalytic hydrogenation of biomass-derived mo...
Ruthenium (Ru) based catalysts effectively hydrogenate aromatic compounds, olefins, aldehydes, keton...
<p>The effect of ruthenium particle size on Fischer-Tropsch synthesis (FTS) has been studied at 513 ...
The effect of ruthenium particle size on Fischer-Tropsch synthesis (FTS) has been studied at 513 K, ...
One of the most significant reactions in gas-to-liquid (GTL) technology is the Fischer-Tropsch synth...
Metal/ordered mesoporous aluminosilicates (OMAS) have received great attention as bifunctional Fisch...
Aqueous phase Fischer-Tropsch synthesis catalyzed by Ru nanoparticles was studied in a continuous fl...
A series of robust nanocatalysts constructed from ruthenium nanoclusters dispersed on titania nanoro...
Ruthenium is a promising low-temperature catalyst for Fischer-Tropsch synthesis (FTS). However, its ...
A Ru/\u3b3-Al2O3 (0.87% wt./wt.) catalyst has been studied for the Fischer-Tropsch synthesis (FTS) a...
Ru catalysts supported on different mesoporous silicas, MCM-41, MCM-48, SBA-15 and KIT-6, were appli...
We report here a thermal reduction method for preparing Ru catalysts supported on a carbon substrate...
Two novel Ru Fischer–Tropsch (FT) catalysts were made that were supported on the inside of two hollo...
Two novel Ru Fischer–Tropsch (FT) catalysts were made that were supported on the inside of two hollo...
Two novel Ru Fischer–Tropsch (FT) catalysts were made that were supported on the inside of two hollo...
Supported ruthenium based materials are active for the catalytic hydrogenation of biomass-derived mo...
Ruthenium (Ru) based catalysts effectively hydrogenate aromatic compounds, olefins, aldehydes, keton...
<p>The effect of ruthenium particle size on Fischer-Tropsch synthesis (FTS) has been studied at 513 ...
The effect of ruthenium particle size on Fischer-Tropsch synthesis (FTS) has been studied at 513 K, ...
One of the most significant reactions in gas-to-liquid (GTL) technology is the Fischer-Tropsch synth...
Metal/ordered mesoporous aluminosilicates (OMAS) have received great attention as bifunctional Fisch...
Aqueous phase Fischer-Tropsch synthesis catalyzed by Ru nanoparticles was studied in a continuous fl...
A series of robust nanocatalysts constructed from ruthenium nanoclusters dispersed on titania nanoro...
Ruthenium is a promising low-temperature catalyst for Fischer-Tropsch synthesis (FTS). However, its ...
A Ru/\u3b3-Al2O3 (0.87% wt./wt.) catalyst has been studied for the Fischer-Tropsch synthesis (FTS) a...
Ru catalysts supported on different mesoporous silicas, MCM-41, MCM-48, SBA-15 and KIT-6, were appli...
We report here a thermal reduction method for preparing Ru catalysts supported on a carbon substrate...