Direct conversion of synthesis gas to light olefins using dual bed reactor
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[1] A. Beale,et al. Local and long range order in promoted iron-based Fischer–Tropsch catalysts: A combined in situ X-ray absorption spectroscopy/wide angle X-ray scattering study , 2009 .
[2] Xiaohong Li,et al. Direct synthesis of middle iso-paraffins from synthesis gas , 2003 .
[3] K. Jun,et al. Deactivation study on a coprecipitated Fe-Cu-K-Al catalyst in CO2 hydrogenation , 2001 .
[4] Xiaohong Li,et al. Selective production of iso-paraffins from syngas over Co/SiO2 and Pd/beta hybrid catalysts , 2005 .
[5] Hans Schulz,et al. Kinetic modelling of Fischer–Tropsch product distributions , 1999 .
[6] Kaoru Fujimoto,et al. Iso-paraffins synthesis from modified Fischer-Tropsch reaction : Insights into Pd/beta and Pt/beta catalysts , 2005 .
[7] Enrique Iglesia,et al. Promoted iron-based catalysts for the Fischer-Tropsch synthesis: Design, synthesis, site densities, and catalytic properties , 2002 .
[8] Agustín Martínez,et al. The influence of ZSM-5 zeolite composition and crystal size on the in situ conversion of Fischer–Tropsch products over hybrid catalysts , 2005 .
[9] Frerich J. Keil,et al. Methanol-to-hydrocarbons: process technology , 1999 .
[10] Jacob A. Moulijn,et al. Production of clean transportation fuels and lower olefins from Fischer-Tropsch Synthesis waxes under fluid catalytic cracking conditions: The potential of highly paraffinic feedstocks for FCC , 2006 .
[11] Yijun Lu,et al. Influence of the Feed Gas Composition on the Fischer-Tropsch Synthesis in Commercial Operations , 2007 .
[12] Abhaya K. Datye,et al. Phase Transformations in Iron Fischer–Tropsch Catalysts during Temperature-Programmed Reduction , 2000 .
[13] Santosh K. Gangwal,et al. Development of Fe Fischer–Tropsch catalysts for slurry bubble column reactors , 2000 .
[14] Chenghua Zhang,et al. Promotional effects of Cu and K on precipitated iron-based catalysts for Fischer-Tropsch synthesis , 2008 .
[15] Jin Suk Chung,et al. Production of middle distillate in a dual-bed reactor from synthesis gas through wax cracking: Effect of acid property of Pd-loaded solid acid catalysts on the wax conversion and middle distillate selectivity , 2008 .
[16] A. Tavasoli,et al. Lowering methane and raising distillates yields in Fischer–Tropsch synthesis by using promoted and unpromoted cobalt catalysts in a dual bed reactor , 2006 .
[17] R. O'brien,et al. Effect of Potassium Promotion on Iron-Based Catalysts for Fischer–Tropsch Synthesis , 1998 .
[18] F. G. Botes,et al. The effect of a higher operating temperature on the Fischer–Tropsch/HZSM-5 bifunctional process , 2005 .
[19] Hyun-Seog Roh,et al. Catalytic investigation for Fischer: Tropsch synthesis from bio-mass derived syngas , 2004 .
[20] Alexis T. Bell,et al. Fischer-Tropsch synthesis over reduced and unreduced iron oxide catalysts , 1986 .
[21] M. O. Garg,et al. Effect of Synthesis Methods and Modification Treatments of ZSM-5 on Light Alkane Aromatization , 2006 .
[22] Jie Chang,et al. Selective synthesis of middle isoparaffins via a two-stage Fischer-Tropsch reaction: Activity investigation for a hybrid catalyst , 2005 .
[23] E. Iglesia,et al. Effects of Zn, Cu, and K Promoters on the Structure and on the Reduction, Carburization, and Catalytic Behavior of Iron-Based Fischer–Tropsch Synthesis Catalysts , 2001 .
[24] Wei Chu,et al. Advances in the development of novel cobalt Fischer-Tropsch catalysts for synthesis of long-chain hydrocarbons and clean fuels. , 2007, Chemical reviews.
[25] Xiaohong Li,et al. Direct synthesis of middle iso-paraffins from synthesis gas on hybrid catalysts , 2004 .
[26] Kaoru Fujimoto,et al. Formation of Isoparaffins through Pd/β Zeolite Application in Fischer−Tropsch Synthesis , 2005 .