The formation of Fe-carbide phases is relevant to the synthesis of Fischer-Tropsch synthesis catalysts. We investigated the carburization of Raney Fe as a model catalyst using spectroscopic and temperature-programmed techniques. IR spectroscopy shows that CO dissociation already occurs at −150 °C, while C diffusion into metallic Fe requires much higher temperature (~180 °C). The carburization rate increases with increasing H2/CO ratio, which can be attributed to the lower overall barrier for O removal as H2O as compared to CO2. O removal frees vacancies that are needed for CO dissociation. The resulting higher C coverage increases the driving force for Fe-carbide formation. A higher driving force leads to predominant formation of the more c...
The kinetics of the transformation of metallic Fe to the active Fe carbide phase at the start of the...
The stability and reactivity of ϵ, χ, and θ iron carbide phases in Fischer−Tropsch synthesis (FTS) c...
Transformation behavior of carbonaceous species over a precipitated iron-based Fischer-Tropsch synth...
The formation of Fe-carbide phases is relevant to the synthesis of Fischer-Tropsch synthesis catalys...
The formation of Fe-carbide phases is relevant to the synthesis of Fischer-Tropsch synthesis catalys...
Iron carbides are unmistakably associated with the active phase for Fischer-Tropsch synthesis (FTS)....
The conversion of unpromoted, unsupported metallic iron catalysts into carbides during Fischer-Trops...
In Fe-based Fischer-Tropsch Synthesis (FTS), the Fe carbides form under the carburizing H2 : CO reac...
In Fe-based Fischer-Tropsch Synthesis (FTS), the Fe carbides form under the carburizing H2 : CO reac...
The kinetics of the transformation of metallic Fe to the active Fe carbide phase at the start of the...
The stability and reactivity of ϵ, χ, and θ iron carbide phases in Fischer−Tropsch synthesis (FTS) c...
Transformation behavior of carbonaceous species over a precipitated iron-based Fischer-Tropsch synth...
The formation of Fe-carbide phases is relevant to the synthesis of Fischer-Tropsch synthesis catalys...
The formation of Fe-carbide phases is relevant to the synthesis of Fischer-Tropsch synthesis catalys...
Iron carbides are unmistakably associated with the active phase for Fischer-Tropsch synthesis (FTS)....
The conversion of unpromoted, unsupported metallic iron catalysts into carbides during Fischer-Trops...
In Fe-based Fischer-Tropsch Synthesis (FTS), the Fe carbides form under the carburizing H2 : CO reac...
In Fe-based Fischer-Tropsch Synthesis (FTS), the Fe carbides form under the carburizing H2 : CO reac...
The kinetics of the transformation of metallic Fe to the active Fe carbide phase at the start of the...
The stability and reactivity of ϵ, χ, and θ iron carbide phases in Fischer−Tropsch synthesis (FTS) c...
Transformation behavior of carbonaceous species over a precipitated iron-based Fischer-Tropsch synth...