Modeling of a slurry bubble column reactor for Fischer-Tropsch synthesis

Journal of Coal Science and Engineering (China) - Tập 18 Số 1 - Trang 88-95 - 2012
Weixin Qian1, Hongfang Ma1, Tao Li1, Weiyong Ying1, Dingye Fang1
1Engineering Research Center of Large Scale Reactor Engineering and Technology, State Key Laboratory of Chemical Engineering, East China University of Science and Technology, Shanghai, 200237, China

Tóm tắt

Từ khóa


Tài liệu tham khảo

Decker W D, Serpemen Y, Ralek M, Schmidt B, 1982. Modeling the Fischer-Tropsch synthesis in the slurry phase. Industrial & Engineering Chemistry Process Design and Development, 21(2): 231–241.

Dijk H A J, Hoebink H B J, Schouten J C, 2001. Steady-state isotopic transient kinetic analysis of the Fischer-Tropsch synthesis reaction over cobalt-based catalysts. Chemical Engineering Science, 56(4): 1211–1219.

Dry M E, 2002. The Fischer-Tropsch process: 1950–2000. Catalysis Today, 71(3–4): 227–241.

Ledakowicz S, 1992. Methanol synthesis in bubble column slurry reactors. Chemical Engineering & Processing, 31(4): 212–219.

Nigam K D P, Schumpe A, 1996. Three-phase sparged reactors. Amsterdam: Gordon and Breach Publishers.

Qian W X, 2011a. Reaction kinetics of Fischer-Tropsch synthesis over a Co/AC catalyst and mathematical simulation of slurry bubble column reactor. Docter’s Thesis, East China University of Science and Technology.

Qian W X, Zhang H T, Ying W Y, Fang D Y, 2011b. The Product distributions of Fischer-Tropsch synthesis over a Co/AC catalyst. Journal of Natural Gas Chemistry, 20(4): 389–396.

Rados N, Dahhan M H, Dudukovic M P, 2003. Modeling of the Fischer-Tropsch synthesis in slurry bubble column reactors. Catalysis Today, 79–80: 211–218.

Sanders E, Deckwer W D, 1987. Fischer-Tropsch synthesis in slurry phase: effect of CO2 inhibition on performance of bubble column slurry reactors. The Canadian Journal of Chemical Engineering, 65(1): 119–126.

Sehabiague L, Lemoine R, Behkish A, Heintz Y J, Sanoja M, Oukaci R, Morsi B I, 2008. Modeling and optimization of a large-scale slurry bubble column reactor for producing 10 000 barrels per day of Fischer-Tropsch liquid hydrocarbons. Journal of the Chinese Institute of Chemical Engineers, 39(2): 169–179.

Smith D N, Ruether J A, 1985. Dispersed solid dynamics in a slurry bubble column. Chemical Engineering Science, 40(5): 741–754.

van der Laan G P, Beenackers A A C M, Krishna R, 1999. Multicomponent reaction engineering model for Fe-catalyzed Fischer-Tropsch synthesis in commercial scale slurry bubble column reactors. Chemical Engineering Science, 54: 5013–5029.

Visconti C G, Lietti L, Tronconi E, Forzatti P, Zennaro R, Finocchio E, 2009. Fischer-Tropsch synthesis on a Co/Al2O3 catalyst with CO2 containing syngas. Applied Catalysis A: General, 355(1–2): 61–68.

Wang T F, Wang J F, Jin Y, 2007. Slurry reactors for gas-to-liquid processes: a review. Industrial & Engineering Chemistry Research, 46(18): 5824–5847.

Wang Y N, Li Y W, Zhao Y L, Zhang B J, 1999. Modeling of Fischer-Tropsch synthesis in bubble column slurry reactors: numerical analysis. Journal of Fuel Chemistry and Technology, 27(3): 193–202.

Wang Y N, Xu Y Y, Li Y W, Zhan Y L, Zhang B J, 2003. Heterogeneous modeling for fixed-bed Fischer-Tropsch synthesis: reactor model and its applications. Chemical Engineering Science, 58(3–6): 867–875.

Wang Y, Fan W, Liu Y, Zeng Z Y, Hao X, Chang M, Zhang C H, Xu Y Y, Xiang H W, Li Y W, 2008. Modeling of the Fischer-Tropsch synthesis in slurry bubble column reactors. Chemical Engineering Process, 47(2): 222–228.

Zaman M, Khodadi A, Mortazav Y, 2009. Fischer-Tropsch synthesis over cobalt dispersed on carbon nanotubes-based supports and activated carbon. Fuel Processing Technology, 90(10): 1214–1219.