Promoting jet fuel production by utilizing a Ru-doped Co-based catalyst of Ru-Co@C(Z-d)@Void@CeO2 in Fischer Tropsch synthesis. [PDF]
Safari M, Haghtalab A, Roghabadi FA.
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Comparing Life-Cycle Emissions of Biofuels for Marine Applications: Hydrothermal Liquefaction of Wet Wastes, Pyrolysis of Wood, Fischer-Tropsch Synthesis of Landfill Gas, and Solvolysis of Wood. [PDF]
Masum FH +6 more
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Direct Conversion of Syngas to Higher Alcohols via Tandem Integration of Fischer-Tropsch Synthesis and Reductive Hydroformylation. [PDF]
Jeske K +8 more
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Natural aluminosilicate nanotubes loaded with RuCo as nanoreactors for Fischer-Tropsch synthesis. [PDF]
Mazurova K +9 more
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Effect of Pyrolysis on iron-metal organic frameworks (MOFs) to Fe3C @ Fe5C2 for diesel production in Fischer-Tropsch Synthesis. [PDF]
Munir S +4 more
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Effects of Silica Shell Encapsulated Nanocrystals on Active χ-Fe5C2 Phase and Fischer-Tropsch Synthesis. [PDF]
Cha S, Kim H, Choi H, Kim CS, Ha KS.
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Correction: CFD study on microchannel reactor operating conditions for Fischer-Tropsch synthesis with Fe-based catalysts. [PDF]
Ren S, Wang Y.
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In Situ Surface-Sensitive Investigation of Multiple Carbon Phases on Fe(110) in the Fischer-Tropsch Synthesis. [PDF]
Shipilin M +12 more
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Cumulative causation in the formation of a technological innovation system: The case of biofuels in the Netherlands [PDF]
Despite its worldwide success, the innovation systems approach is often criticized for being theoretically underdeveloped. This article aims to contribute to the conceptual and methodical basis of the (technological) innovation systems approach.
Marko P. Hekkert, Roald A.A. Suurs
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CO<sub>2</sub>-free Fischer-Tropsch synthesis enabled by halogen modifiers. [PDF]
Pérez-Ramírez J.
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