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Synthesis of stable and low-CO2 selective ?-iron carbide Fischer-Tropsch catalysts.


ABSTRACT: The Fe-catalyzed Fischer-Tropsch (FT) reaction constitutes the core of the coal-to-liquids (CTL) process, which converts coal into liquid fuels. Conventional Fe-based catalysts typically convert 30% of the CO feed to CO2 in the FT unit. Decreasing the CO2 release in the FT step will reduce costs and enhance productivity of the overall process. In this context, we synthesize phase-pure ?(')-Fe2C catalysts exhibiting low CO2 selectivity by carefully controlling the pretreatment and carburization conditions. Kinetic data reveal that liquid fuels can be obtained free from primary CO2. These catalysts displayed stable FT performance at 23 bar and 235°C for at least 150 hours. Notably, in situ characterization emphasizes the high durability of pure ?(')-Fe2C in an industrial pilot test. These findings contribute to the development of new Fe-based FT catalysts for next-generation CTL processes.

SUBMITTER: Wang P 

PROVIDER: S-EPMC6184692 | biostudies-literature | 2018 Oct

REPOSITORIES: biostudies-literature

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Synthesis of stable and low-CO<sub>2</sub> selective ε-iron carbide Fischer-Tropsch catalysts.

Wang Peng P   Chen Wei W   Chiang Fu-Kuo FK   Dugulan A Iulian AI   Song Yuanjun Y   Pestman Robert R   Zhang Kui K   Yao Jinsong J   Feng Bo B   Miao Ping P   Xu Wayne W   Hensen Emiel J M EJM  

Science advances 20181012 10


The Fe-catalyzed Fischer-Tropsch (FT) reaction constitutes the core of the coal-to-liquids (CTL) process, which converts coal into liquid fuels. Conventional Fe-based catalysts typically convert 30% of the CO feed to CO<sub>2</sub> in the FT unit. Decreasing the CO<sub>2</sub> release in the FT step will reduce costs and enhance productivity of the overall process. In this context, we synthesize phase-pure ε(')-Fe<sub>2</sub>C catalysts exhibiting low CO<sub>2</sub> selectivity by carefully cont  ...[more]

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