FISCHER-TROPSCH SYNTHESIS IN A SLURRY REACTOR - PRETREATMENT EFFECT STUDIES

被引:27
作者
BUKUR, DB
NOWICKI, L
LANG, XS
机构
[1] Department of Chemical Engineering, Kinetics, Catalysis and Chemical Reaction Engineering Laboratory, Texas A & M University, College Station
关键词
D O I
10.1021/ef00052a008
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Effects of pretreatment procedures, using H-2, CO, and syngas (H-2/CO = 0.7) as reductants, on the performance (activity, selectivity, and stability with time) of a precipitated iron catalyst (100 Fe/5 Cu/4.2 K/16 SiO2 on a mass basis) during Fischer-Tropsch (FT) synthesis were studied in a stirred tank slurry reactor. The syngas conversion varied between 70 and 87% during the first 300 h on stream at baseline process conditions (260 degrees C, 1.48 MPa, 1.5 L(STP)/g-cat/h, H-2/CO = 0.67), and the catalyst deactivation rate was less than 1% per day in all three tests, The catalyst selectivity did not vary markedly with time on stream. The reactor space-time-yield increased by 32-47% in all three tests, upon increasing the reaction pressure and gas space velocity to 2.17 MPa and 2.2 L(STP)/g-cat/h, respectively. The catalyst deactivation rate increased and the water-gas-shift (WGS) activity decreased during testing at the higher reaction pressure. This resulted in a slight decrease of secondary olefin hydrogenation and isomerization reactions in all three tests, and in a shift of hydrocarbon distribution toward higher molecular weight products (CO pretreated catalyst). Total olefin content decreased in the following order with the pretreatment conditions: CO > syngas > H-2, whereas the olefin isomerization activity was essentially independent of the pretreatment conditions employed, Methane selectivity varied with the pretreatment conditions in the following order: CO < H-2 < syngas.
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页码:620 / 629
页数:10
相关论文
共 46 条
[1]   CARBURIZATION OF SUPPORTED IRON SYNTHESIS CATALYSTS [J].
AMELSE, JA ;
BUTT, JB ;
SCHWARTZ, LH .
JOURNAL OF PHYSICAL CHEMISTRY, 1978, 82 (05) :558-563
[2]  
Anderson R.B., 1956, CATALYSIS, VIV, P29
[3]  
Anderson R. B., 1984, FISCHER TROPSCH SYNT
[4]   ON THE MECHANISM OF THE FISCHER-TROPSCH SYNTHESIS INVOLVING UNREDUCED IRON CATALYST [J].
BLANCHARD, F ;
REYMOND, JP ;
POMMIER, B ;
TEICHNER, SJ .
JOURNAL OF MOLECULAR CATALYSIS, 1982, 17 (2-3) :171-181
[5]   FISCHER-TROPSCH SYNTHESIS IN A STIRRED TANK SLURRY REACTOR - REACTION-RATES [J].
BUKUR, DB ;
BROWN, RF .
CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 1987, 65 (04) :604-612
[6]   FIXED-BED AND SLURRY REACTOR STUDIES OF FISCHER-TROPSCH SYNTHESIS ON PRECIPITATED IRON CATALYST [J].
BUKUR, DB ;
PATEL, SA ;
LANG, XS .
APPLIED CATALYSIS, 1990, 61 (02) :329-349
[7]   BINDER SUPPORT EFFECTS ON THE ACTIVITY AND SELECTIVITY OF IRON CATALYSTS IN THE FISCHER-TROPSCH SYNTHESIS [J].
BUKUR, DB ;
LANG, X ;
MUKESH, D ;
ZIMMERMAN, WH ;
ROSYNEK, MP ;
LI, CP .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1990, 29 (08) :1588-1599
[8]  
BUKUR DB, 1994, CHEM ENG SCI, V49, P4615
[9]   ACTIVATION STUDIES WITH A PROMOTED PRECIPITATED IRON FISCHER-TROPSCH CATALYST [J].
BUKUR, DB ;
LANG, XS ;
ROSSIN, JA ;
ZIMMERMAN, WH ;
ROSYNEK, MP ;
YEH, EB ;
LI, CP .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1989, 28 (08) :1130-1140
[10]   PROMOTER EFFECTS ON PRECIPITATED IRON CATALYSTS FOR FISCHER-TROPSCH SYNTHESIS [J].
BUKUR, DB ;
MUKESH, D ;
PATEL, SA .
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 1990, 29 (02) :194-204