Low-temperature Fischer–Tropsch reaction data are reported for Ru nanoparticles suspended in the water phase. Their activity and selectivity strongly depends on particle size, when varied between 1 to 5 nm. Small particles display high oxygenates selectivity. The Anderson–Schulz–Flory (ASF) chain-growth probability for oxygenates is significantly lower than that observed for hydrocarbons. The chain growth parameter for hydrocarbon formation is independent of particle size. For oxygenates it is constant only for particles larger than 3 nm. Oxygenate and hydrocarbon formation occur on different sites. The ASF chain-growth probability for oxygenate formation increases with temperature. For very small 1.2 nm particles it shows a maximum as a fu...
<p>The effect of ruthenium particle size on Fischer-Tropsch synthesis (FTS) has been studied at 513 ...
Aqueous phase Fischer-Tropsch synthesis catalyzed by Ru nanoparticles was studied in a continuous fl...
The effects of ionic additives on the catalytic activity and product distribution of hydrocarbons an...
Low-temperature Fischer–Tropsch reaction data are reported for Ru nanoparticles suspended in the wat...
Not just for anglers: An unprecedented oxygenate selectivity of 70¿% in the Fischer–Tropsch synthesi...
Synchrotron X-ray diffraction coupled to atomic pair distribution function analysis and Reverse Mont...
Fischer-Tropsch synthesis (FTS) is an increasingly important approach for producing liquid fuels and...
Microkinetics simulations are presented based on DFT-determined elementary reaction steps of the Fis...
This work assesses the effect of the particle size for the Fischer–Tropsch synthesis with catalysts ...
A comprehensive density functional theory study of the Fischer–Tropsch mechanism on the corrugated R...
Strong interest in the Fischer–Tropsch reaction that converts synthesis gas into hydrocarbons is rea...
We report here a new strategy for the control of hydrocarbon selectivity in Fischer-Tropsch (FT) syn...
Ruthenium is a promising low-temperature catalyst for Fischer-Tropsch synthesis (FTS). However, its ...
International audienceThe reactivity of two classes of ruthenium nanoparticles (Ru NPs) of small siz...
<p>The effect of ruthenium particle size on Fischer-Tropsch synthesis (FTS) has been studied at 513 ...
Aqueous phase Fischer-Tropsch synthesis catalyzed by Ru nanoparticles was studied in a continuous fl...
The effects of ionic additives on the catalytic activity and product distribution of hydrocarbons an...
Low-temperature Fischer–Tropsch reaction data are reported for Ru nanoparticles suspended in the wat...
Not just for anglers: An unprecedented oxygenate selectivity of 70¿% in the Fischer–Tropsch synthesi...
Synchrotron X-ray diffraction coupled to atomic pair distribution function analysis and Reverse Mont...
Fischer-Tropsch synthesis (FTS) is an increasingly important approach for producing liquid fuels and...
Microkinetics simulations are presented based on DFT-determined elementary reaction steps of the Fis...
This work assesses the effect of the particle size for the Fischer–Tropsch synthesis with catalysts ...
A comprehensive density functional theory study of the Fischer–Tropsch mechanism on the corrugated R...
Strong interest in the Fischer–Tropsch reaction that converts synthesis gas into hydrocarbons is rea...
We report here a new strategy for the control of hydrocarbon selectivity in Fischer-Tropsch (FT) syn...
Ruthenium is a promising low-temperature catalyst for Fischer-Tropsch synthesis (FTS). However, its ...
International audienceThe reactivity of two classes of ruthenium nanoparticles (Ru NPs) of small siz...
<p>The effect of ruthenium particle size on Fischer-Tropsch synthesis (FTS) has been studied at 513 ...
Aqueous phase Fischer-Tropsch synthesis catalyzed by Ru nanoparticles was studied in a continuous fl...
The effects of ionic additives on the catalytic activity and product distribution of hydrocarbons an...