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Kinetics of the water-gas shift reaction in Fischer-Tropsch synthesis over a nano-structured iron catalystALI NAKHAEI POUR; MOHAMMAD REZA HOUSAINDOKHT; SAYYED FARAMARZ TAYYARI et al.Journal of natural gas chemistry. 2010, Vol 19, Num 4, pp 362-368, issn 1003-9953, 7 p.Article

Diesel-length aldehydes and ketones via supercritical Fischer Tropsch Synthesis on an iron catalystDURHAM, Ed; SIHE ZHANG; ROBERTS, Christopher et al.Applied catalysis. A, General (Print). 2010, Vol 386, Num 1-2, pp 65-73, issn 0926-860X, 9 p.Article

Reactivity of surface carbonaceous intermediates on an iron-based Fischer-Tropsch catalystGOVENDER, N. S; DE CROON, M. H. J. M; SCHOUTEN, J. C et al.Applied catalysis. A, General (Print). 2010, Vol 373, Num 1-2, pp 81-89, issn 0926-860X, 9 p.Article

Effect of SiO2 content on iron-based catalysts for slurry Fischer-Tropsch synthesisWENJUAN HOU; BAOSHAN WU; YONG YANG et al.Fuel processing technology. 2008, Vol 89, Num 3, pp 284-291, issn 0378-3820, 8 p.Article

Attrition properties of precipitated iron Fischer-Tropsch catalystsBUKUR, Dragomir B; CARRETO-VAZQUEZ, Victor; PHAM, Hien N et al.Applied catalysis. A, General. 2004, Vol 266, Num 1, pp 41-48, issn 0926-860X, 8 p.Article

Investigation of manganese-doped iron ammonia synthesis catalystsFIGURSKI, Michał J; ARABCZYK, Walerian; LENDZION-BIELUN, Zofia et al.Applied catalysis. A, General. 2004, Vol 266, Num 1, pp 11-20, issn 0926-860X, 10 p.Article

Fast catalytic oxidation of phenol over iron modified zeolite L nanocrystalsADAM, Farook; WONG, Jia-Tian; NG, Eng-Poh et al.Chemical engineering journal (1996). 2013, Vol 214, pp 63-67, issn 1385-8947, 5 p.Article

Design and mechanism of iron catalyzed carbon―carbon bond cleavage and N―oxidation processes of hazardous dyes for selective synthesis of nitroarenes and aminoarenecarboxylic acidsJAGADEESH, Rajenahally V; KIRAN, T; BHAGAT, Pundlik R et al.Journal of molecular catalysis. A, Chemical. 2011, Vol 338, Num 1-2, pp 92-104, issn 1381-1169, 13 p.Article

Catalytic performance and attrition strength of spray-dried iron catalysts for slurry phase Fischer-Tropsch synthesisBUKUR, Dragomir B; CARRETO-VAZQUEZ, Victor H; WENPING MA et al.Applied catalysis. A, General (Print). 2010, Vol 388, Num 1-2, pp 240-247, issn 0926-860X, 8 p.Article

Fischer-Tropsch Synthesis : Characterization Rb Promoted Iron CatalystSARKAR, Amitava; JACOBS, Gary; YAYING JI et al.Catalysis letters. 2008, Vol 121, Num 1-2, pp 1-11, issn 1011-372X, 11 p.Article

Studies on the reaction mechanism of the Fischer-Tropsch synthesis on iron and cobaltGAUBEA, J; KLEIN, H.-F.Journal of molecular catalysis. A, Chemical. 2008, Vol 283, Num 1-2, pp 60-68, issn 1381-1169, 9 p.Article

Iron salts catalyzed synthesis of β-N-substituted aminoacrylatesHEBBACHE, Hania; HANK, Zakia; BOUTAMINE, Sultana et al.Comptes rendus. Chimie. 2008, Vol 11, Num 6-7, pp 612-619, issn 1631-0748, 8 p.Conference Paper

Studies on catalytic performance of precipitated iron/silica catalysts for Fischer-Tropsch synthesisHAYAKAWA, Hiroshi; TANAKA, Hisanori; FUJIMOTO, Kaoru et al.Applied catalysis. A, General. 2007, Vol 328, Num 2, pp 117-123, issn 0926-860X, 7 p.Article

Effect of the Ratio of Precipitated SiO2 to Binder SiO2 on Iron-based Catalysts for Fischer-Tropsch SynthesisWENJUAN HOU; BAOSHAN WU; XIA AN et al.Catalysis letters. 2007, Vol 119, Num 3-4, pp 353-360, issn 1011-372X, 8 p.Article

Deactivation of a precipitated iron Fischer-Tropsch catalyst : A pilot plant studyDUVENHAGE, Dawid J; COVILLE, Neil J.Applied catalysis. A, General. 2006, Vol 298, pp 211-216, issn 0926-860X, 6 p.Article

On the distribution of aluminium and magnesium oxides in wustite catalysts for ammonia synthesisFIGURSKI, Michał J; ARABCZYK, Walerian; LENDZION-BIELUN, Zofia et al.Applied catalysis. A, General. 2003, Vol 247, Num 1, pp 9-15, issn 0926-860X, 7 p.Article

Fischer-Tropsch synthesis: activation of low-alpha potassium promoted iron catalystsMINGSHENG LUO; DAVIS, Burtron H.Fuel processing technology. 2003, Vol 83, Num 1-3, pp 49-65, issn 0378-3820, 17 p.Article

A kinetic study on the structural and functional roles of lanthana in iron-based high temperature water-gas shift catalystsHALLAC, Basseem B; BROWN, Jared C; BAXTER, Larry L et al.International journal of hydrogen energy. 2014, Vol 39, Num 14, pp 7306-7317, issn 0360-3199, 12 p.Article

Fischer-Tropsch Synthesis: Deactivation as a Function of Potassium Promoter Loading for Precipitated Iron CatalystVENKAT RAMANA RAO PENDYALA; GRAHAM, Uschi M; JACOBS, Gary et al.Catalysis letters. 2014, Vol 144, Num 10, pp 1704-1716, issn 1011-372X, 13 p.Article

Investigation of simultaneous removal of ammonia and hydrogen sulphide from producer gas in biomass gasification by titanomagnetiteHONGRAPIPAT, J; YIP, A. C. K; MARSHALL, A. T et al.Fuel (Guildford). 2014, Vol 135, pp 235-242, issn 0016-2361, 8 p.Article

Heterogeneity of ingot of the fused iron catalyst for ammonia synthesisLENDZION-BIELUN, Zofia; JEDRZEJEWSKI, Roman; EKIERT, Ewa et al.Applied catalysis. A, General (Print). 2011, Vol 400, Num 1-2, pp 48-53, issn 0926-860X, 6 p.Article

Investigation of iron complexes in ATRP: Indications of different iron species in normal and reverse ATRPBERGENUDD, Helena; JONSSON, Mats; MALMSTRÖM, Eva et al.Journal of molecular catalysis. A, Chemical. 2011, Vol 346, Num 1-2, pp 20-28, issn 1381-1169, 9 p.Article

Tuning the size and shape of Fe nanoparticles on carbon nanofibers for catalytic ammonia decompositionXUEZHI DUAN; GANG QIAN; XINGGUI ZHOU et al.Applied catalysis. B, Environmental. 2011, Vol 101, Num 3-4, pp 189-196, issn 0926-3373, 8 p.Article

In situ X-ray diffraction study of reduction processes of Fe3O4- and Fe1-xO-based ammonia-synthesis catalystsZHENG, Yi-Fan; LIU, Hua-Zhang; LIU, Zong-Jian et al.Journal of solid state chemistry (Print). 2009, Vol 182, Num 9, pp 2385-2391, issn 0022-4596, 7 p.Article

Iron-catalyzed gas-phase epoxidation of propylene by N2O via halide-assisted oxygen transferHORVATH, Blazej; HRONEC, Milan.Applied catalysis. A, General. 2008, Vol 347, Num 1, pp 72-80, issn 0926-860X, 9 p.Article

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