Effect of Steam During Fischer–Tropsch Synthesis Using Biomass-Derived Syngas
Author:
Funder
U.S. Forest Service
Publisher
Springer Science and Business Media LLC
Subject
General Chemistry,Catalysis
Link
http://link.springer.com/content/pdf/10.1007/s10562-016-1881-8.pdf
Reference36 articles.
1. Digman B, Joo HS, Kim D-S (2009) Recent progress in gasification/pyrolysis technologies for biomass conversion to energy. Environ Prog Sustain Energy 28:47–51
2. Bozell JJ, Astner A, Baker D, Biannic B, Cedeno D, Elder T, Hosseinaei O, Delbeck L, Kim J-W, O’Lenick CJ, Young T (2014) Integrating separation and conversion—conversion of biorefinery process streams to biobased chemicals and fuels. BioEnergy Res 7:856–866
3. Wang Z, Kumar N, Spivey JJ (2016) Preparation and characterization of lanthanum-promoted cobalt–copper catalysts for the conversion of syngas to higher oxygenates: formation of cobalt carbide. J Catal 339:1–8
4. Wang Z, Spivey JJ (2015) Effect of ZrO2, Al2O3 and La2O3 on cobalt–copper catalysts for higher alcohols synthesis. Appl Catal A 507:75–81
5. Prieto G, Beijer S, Smith ML, He M, Au Y, Wang Z, Bruce DA, de Jong KP, Spivey JJ, de Jongh PE (2014) Design and synthesis of copper–cobalt catalysts for the selective conversion of synthesis gas to ethanol and higher alcohols. Angew Chem Int Ed 53:6397–6401
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