Fisher-Tropsch Synthesis (FTS) is industrially used for converting a carbon-containing feedstock, such as coal, natural gas, biomass, and municipal waste, via the production of synthesis gas (a mixture of CO+H2) into hydrocarbons. This review article focuses on Fe-based FTS catalysis, thereby focusing on the process conditions available for steering the various carbon pathways from input CO and their associated reactions. We will also discuss the effects of alkali-sulphur chemical promotion and the identification of the FTS reaction active Fe carbides, which are assigned with precise crystal structures and nomenclature. Each observed Fe carbide crystal structure is further assigned with corresponding Mössbauer Absorption Spectroscopy (MAS) ...
The Fischer-Tropsch Synthesis (FTS) is an alternative route to produce liquid fuels from a variety o...
The formation of Fe-carbide phases is relevant to the synthesis of Fischer-Tropsch synthesis catalys...
The stability and reactivity of ϵ, χ, and θ iron carbide phases in Fischer−Tropsch synthesis (FTS) c...
Fisher-Tropsch Synthesis (FTS) is industrially used for converting a carbon-containing feedstock, su...
Currently, hydrocarbons are used in the vast majority of modern industrial processes leading to the ...
In Fe-based Fischer-Tropsch Synthesis (FTS), the Fe carbides form under the carburizing H2 : CO reac...
The conversion of unpromoted, unsupported metallic iron catalysts into carbides during Fischer-Trops...
AbstractFischer-Tropsch synthesis (FTS), as an important technology for producing liquid fuels and c...
In Fe-based Fischer-Tropsch Synthesis (FTS), the Fe carbides form under the carburizing H2 : CO reac...
Iron carbides are unmistakably associated with the active phase for Fischer-Tropsch synthesis (FTS)....
A Na-S promoted Fe-based Fischer-Tropsch synthesis (FTS) catalyst converts a H2/CO gas mixture into ...
Transformation behavior of carbonaceous species over a precipitated iron-based Fischer-Tropsch synth...
The Fischer-Tropsch Synthesis (FTS) is an alternative route to produce liquid fuels from a variety o...
The formation of Fe-carbide phases is relevant to the synthesis of Fischer-Tropsch synthesis catalys...
The stability and reactivity of ϵ, χ, and θ iron carbide phases in Fischer−Tropsch synthesis (FTS) c...
Fisher-Tropsch Synthesis (FTS) is industrially used for converting a carbon-containing feedstock, su...
Currently, hydrocarbons are used in the vast majority of modern industrial processes leading to the ...
In Fe-based Fischer-Tropsch Synthesis (FTS), the Fe carbides form under the carburizing H2 : CO reac...
The conversion of unpromoted, unsupported metallic iron catalysts into carbides during Fischer-Trops...
AbstractFischer-Tropsch synthesis (FTS), as an important technology for producing liquid fuels and c...
In Fe-based Fischer-Tropsch Synthesis (FTS), the Fe carbides form under the carburizing H2 : CO reac...
Iron carbides are unmistakably associated with the active phase for Fischer-Tropsch synthesis (FTS)....
A Na-S promoted Fe-based Fischer-Tropsch synthesis (FTS) catalyst converts a H2/CO gas mixture into ...
Transformation behavior of carbonaceous species over a precipitated iron-based Fischer-Tropsch synth...
The Fischer-Tropsch Synthesis (FTS) is an alternative route to produce liquid fuels from a variety o...
The formation of Fe-carbide phases is relevant to the synthesis of Fischer-Tropsch synthesis catalys...
The stability and reactivity of ϵ, χ, and θ iron carbide phases in Fischer−Tropsch synthesis (FTS) c...