ACTIVATION STUDIES WITH A PRECIPITATED IRON CATALYST FOR FISCHER-TROPSCH SYNTHESIS .2. REACTION STUDIES

被引:135
作者
BUKUR, DB
NOWICKI, L
MANNE, RK
LANG, XS
机构
[1] Department of Chemical Engineering, Kinetics, Catalysis Chemical Reaction Engineering Laboratory, Texas A and M University, College Station
[2] Institute of Chemical and Process Engineering, Lodz Technical University
关键词
D O I
10.1006/jcat.1995.1218
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Effects of pretreatment conditions on catalyst performance (activity, selectivity, and stability with time) during Fischer-Tropsch (FT) synthesis were studied in a fixed-bed reactor using a commercial precipitated iron catalyst (100 Fe/5 Cu/4.2 K/25 SiO2 on a mass basis). The catalyst activity increased slightly with time-on-stream after hydrogen reductions, which was accompanied with conversion of metallic iron and part of iron oxides to epsilon'-carbide (epsilon'-Fe2.2C). Initial activity of the H-2-reduced catalyst at 280 degrees C for 8 or 24 h was markedly lower than that obtained in other tests. This is attributed to slow carburization of large oxide particles and partial poisoning of catalyst sites by migration of sulfur from the bulk to the surface of the catalyst during the reduction. Pretreatments with carbon monoxide and syngas resulted in partial conversion of Fe2O3 to chi-carbide (chi-Fe5C2). During FT synthesis the CO- and the syngas-pretreated catalyst deactivated slowly with time-on-stream, due to partial conversion of chi-carbide to less active iron oxide phases and buildup of carbonaceous deposits which block the active sites. The hydrogen-reduced catalyst at 280 degrees C, for 1-24 h, produced more methane and gaseous hydrocarbons than the CO- or the syngas-pretreated catalyst and favored secondary reactions (1-olefin hydrogenation, isomerization, and readsorption). (C) 1995 Academic Press, Inc.
引用
收藏
页码:366 / 375
页数:10
相关论文
共 41 条
[21]   MODEL STUDY OF THE HYDROGENATION OF CO OVER POLYCRYSTALLINE IRON [J].
KREBS, HJ ;
BONZEL, HP ;
GAFNER, G .
SURFACE SCIENCE, 1979, 88 (01) :269-283
[22]   COMPOSITIONAL ASPECTS OF IRON FISCHER-TROPSCH CATALYSTS - AN XPS REACTION STUDY [J].
KUIVILA, CS ;
STAIR, PC ;
BUTT, JB .
JOURNAL OF CATALYSIS, 1989, 118 (02) :299-311
[23]   STEADY-STATE FISCHER-TROPSCH SYNTHESIS IN SUPERCRITICAL PROPANE [J].
LANG, XS ;
AKGERMAN, A ;
BUKUR, DB .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1995, 34 (01) :72-77
[24]  
LI C, 1988, THESIS TEXAS A M U
[25]   FISCHER-TROPSCH SYNTHESIS ON A PRECIPITATED IRON CATALYST [J].
MADON, RJ ;
TAYLOR, WF .
JOURNAL OF CATALYSIS, 1981, 69 (01) :32-43
[26]   THE IMPORTANCE OF OLEFIN READSORPTION AND H2/CO REACTANT RATIO FOR HYDROCARBON CHAIN GROWTH ON RUTHENIUM CATALYSTS [J].
MADON, RJ ;
IGLESIA, E .
JOURNAL OF CATALYSIS, 1993, 139 (02) :576-590
[27]  
NIEMANTSVERDRIE.JW, 1981, J CATAL, V72, P385
[28]   ACTIVATION AND PROMOTION STUDIES IN A MIXED SLURRY REACTOR WITH AN IRON-MANGANESE FISCHER-TROPSCH CATALYST [J].
PENNLINE, HW ;
ZAROCHAK, MF ;
STENCEL, JM ;
DIEHL, JR .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1987, 26 (03) :595-601
[29]   MOSSBAUER INVESTIGATION OF SUPPORTED FE AND FENI CATALYSTS .2. CARBIDES FORMED BY FISCHER-TROPSCH SYNTHESIS [J].
RAUPP, GB ;
DELGASS, WN .
JOURNAL OF CATALYSIS, 1979, 58 (03) :348-360
[30]   MOSSBAUER INVESTIGATION OF SUPPORTED FE CATALYSTS .3. INSITU KINETICS AND SPECTROSCOPY DURING FISCHER-TROPSCH SYNTHESIS [J].
RAUPP, GB ;
DELGASS, WN .
JOURNAL OF CATALYSIS, 1979, 58 (03) :361-369