Surface characterization of sulfided precipitated-iron Fischer-Tropsch catalysts by X-ray photoelectron spectroscopy

被引:12
作者
Bromfield, TC [1 ]
Coville, NJ [1 ]
机构
[1] UNIV WITWATERSRAND,DEPT CHEM,APPL CHEM & CHEM TECHNOL CTR,JOHANNESBURG,SOUTH AFRICA
关键词
D O I
10.1016/S0169-4332(97)00186-4
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
A series of novel sulfur-containing precipitated-iron catalysts were prepared by the addition of 2000-20000 ppm sulfur (Na2S, (NH4)(2)S, (NH4)(2)S-5) to iron, during the precipitation reaction. XPS characterization of the highly sulfided catalyst (20000 ppm) after calcination at 200 degrees C and 400 degrees C did not reveal the presence of surface sulfur (160-170 eV region). However, low temperature calcination (200 degrees C) followed by reduction (300 degrees C) revealed surface S2- (162.3 eV), while high temperature calcination (400 degrees C) gave rise to SO42- (169.4 eV) species. Use of a higher reduction temperature (400 degrees C) increased the surface sulfide concentration to 15.6 at% S2- as compared to 1.3 at% after reduction at 300 degrees C. At lower S loadings (2000, 5000 ppm) only sulfate species were observed under analogous conditions. The addition of polysulfide ((NH4)(2)S-5) instead of S2-, resulted in the formation of a surface polysulfide and SO42- surface species. A mechanism for the surface segregation of sulfur after reduction in terms of site competition with oxygen is consistent with the data. (C) 1997 Elsevier Science B.V.
引用
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页码:19 / 24
页数:6
相关论文
共 29 条
[1]   S AND FE BINDING TO THE FE(100) SURFACE AND IN THE BULK - MOLECULAR-ORBITAL THEORY FOR SURFACE SEGREGATION OF S [J].
ANDERSON, AB ;
HONG, SY .
SURFACE SCIENCE, 1988, 204 (1-2) :L708-L712
[2]   EFFECT OF SURFACE-TREATMENT ON SEGREGATION OF IMPURITIES IN HEMATITE [J].
BERNASIK, A ;
JANOWSKI, J ;
HIRSCHWALD, W ;
STOLZE, F ;
NOWOTNY, J .
JOURNAL OF MATERIALS SCIENCE, 1991, 26 (09) :2527-2532
[3]   Fischer-Tropsch synthesis on Co and Co(Ru-doped) ETS-10 titanium silicate catalysts [J].
Bianchi, CL ;
Carli, R ;
Merlotti, S ;
Ragaini, V .
CATALYSIS LETTERS, 1996, 41 (1-2) :79-82
[4]  
BRIGGS D, 1983, PRACTICAL SURFACE AN, P491
[5]   STUDY BY PHOTOELECTRON-SPECTROSCOPY OF SURFACE DEGRADATION OF FES2, CUFES2 ZNS AND PBS EXPOSED TO AIR AND WATER [J].
BRION, D .
APPLICATIONS OF SURFACE SCIENCE, 1980, 5 (02) :133-152
[6]  
BROMFIELD TC, IN PRESS
[7]   CORE AND VALENCE LEVEL PHOTOEMISSION STUDIES OF IRON-OXIDE SURFACES AND OXIDATION OF IRON [J].
BRUNDLE, CR ;
CHUANG, TJ ;
WANDELT, K .
SURFACE SCIENCE, 1977, 68 (01) :459-468
[8]   CORE ELECTRON-BINDING ENERGIES OF PLATINUM AND RHODIUM POLYSULFIDES [J].
BUCKLEY, AN ;
WOUTERLOOD, HJ ;
CARTWRIGHT, PS ;
GILLARD, RD .
INORGANICA CHIMICA ACTA, 1988, 143 (01) :77-80
[9]   TRANSFORMATION OF POLYSULFIDIC SULFUR TO ELEMENTAL SULFUR IN A CHELATED IRON, HYDROGEN-SULFIDE OXIDATION PROCESS [J].
CLARKE, ET ;
SOLOUKI, T ;
RUSSELL, DH ;
MARTELL, AE ;
MCMANUS, D .
ANALYTICA CHIMICA ACTA, 1994, 299 (01) :97-111
[10]   REACTION OF [FE(SC6H5)4]2- WITH ORGANIC TRISULFIDES AND IMPLICATIONS CONCERNING THE BIOSYNTHESIS OF FERREDOXINS - SYNTHESIS AND STRUCTURE OF THE [(C6H5)4P]2FE2S12 COMPLEX [J].
COUCOUVANIS, D ;
SWENSON, D ;
STREMPLE, P ;
BAENZIGER, NC .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1979, 101 (12) :3392-3394