Selective reduction of NO with Fe-ZSM-5 catalysts of low Fe content -: I.: Relations between active site structure and catalytic performance

被引:290
作者
Schwidder, M
Kumar, MS
Klementiev, K
Pohl, MM
Brückner, A
Grünert, W
机构
[1] Ruhr Univ Bochum, Lehrstuhl Tech Chem, D-44780 Bochum, Germany
[2] Inst Angew Chem Berlin Adlershof EV, D-12489 Berlin, Germany
关键词
DeNo(x); Fe-ZSM-5; isobutane; ammonia; EXAFS; UV-vis spectroscopy; EPR spectroscopy; active sites;
D O I
10.1016/j.jcat.2005.01.031
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
Fe-ZSM-5 catalysts (0.2-1.2 wt% Fe) were prepared by an exchanging of Na-ZSM-5 with Fe2+ ions formed by the dissolution of iron in acidic medium, and characterized by UV-vis, EPR, and X-ray absorption spectroscopy and by TPR and TEM. Their catalytic properties were investigated for the selective catalytic reduction (SCR) of NO by isobutane (2000 ppm NO, 2000 ppm isobutane, 3% O-2, 42,000 h(-1)) or by NH3 (1000 ppm NO, 1000 ppm NH3, 1% O-2, 750,000 h(-1)). The catalysts were highly active in both reactions, competing favorably with catalysts prepared by chemical vapor deposition of FeCl3 into H-ZSM-5. The spectroscopic studies showed that at Fe contents less than or equal to 0.3 wt%, ca. 95% of the iron was present in mononuclear sites of different coordination. At higher Fe contents, small oligomeric clusters coexisted with mononuclear sites, and at 1.2% Fe, large, poorly ordered Fe oxide aggregates were also detected. By correlation of the activities with the concentration of Fe sites as determined from UV-vis spectra, it was established that mononuclear Fe ions are active sites for both SCR reactions, but oligomers contribute as well. At the same time, oligomers (and aggregate surfaces) are more active in unselective oxidation of the reductant, which limits the temperature window of selective NO reduction. This unselective attack by clustered species occurs at low temperatures with isobutane; hence the best performance was found for a catalyst of low Fe content (0.3 wt%), which is at variance with previous optimization strategies. With NH3, the unselective attack occurs at a much higher temperature; hence the best catalysts for NH3-SCR are those with the highest exposure of Fe sites. (c) 2005 Elsevier Inc. All rights reserved.
引用
收藏
页码:314 / 330
页数:17
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共 50 条
[31]   Selective catalytic reduction of NO by ammonia over Fe-ZSM-5 catalysts [J].
Ma, AZ ;
Grünert, W .
CHEMICAL COMMUNICATIONS, 1999, (01) :71-72
[32]   Fe/ZSM-5 prepared by sublimation of FeCl3:: The structure of the Fe species as determined by IR, 27Al MAS NMR, and EXAFS spectroscopy [J].
Marturano, P ;
Drozdová, L ;
Kogelbauer, A ;
Prins, R .
JOURNAL OF CATALYSIS, 2000, 192 (01) :236-247
[33]   OXIDATION OF BENZENE TO PHENOL BY NITROUS-OXIDE OVER FE-ZSM-5 ZEOLITES [J].
PANOV, GI ;
SHEVELEVA, GA ;
KHARITONOV, AS ;
ROMANNIKOV, VN ;
VOSTRIKOVA, LA .
APPLIED CATALYSIS A-GENERAL, 1992, 82 (01) :31-36
[34]   Generation of active oxygen species on solid surfaces. Opportunity for novel oxidation technologies over zeolites [J].
Panov, GI ;
Uriarte, AK ;
Rodkin, MA ;
Sobolev, VI .
CATALYSIS TODAY, 1998, 41 (04) :365-385
[35]   Reduction of N2O with CO over FeMFI zeolites:: influence of the preparation method on the iron species and catalytic behavior [J].
Pérez-Ramírez, J ;
Kumar, MS ;
Brückner, A .
JOURNAL OF CATALYSIS, 2004, 223 (01) :13-27
[36]   Active site structure sensitivity in N2O conversion over FeMFI zeolites [J].
Pérez-Ramírez, J ;
Kapteijn, F ;
Brückner, A .
JOURNAL OF CATALYSIS, 2003, 218 (01) :234-238
[37]   Ex-framework FeZSM-5 for control of N2O in tail-gases [J].
Pérez-Ramírez, J ;
Kapteijn, F ;
Mul, G ;
Xu, XD ;
Moulijn, JA .
CATALYSIS TODAY, 2002, 76 (01) :55-74
[38]   Activity, selectivity and durability of VO-ZSM-5 catalysts for the selective catalytic reduction of NO by ammonia [J].
Piehl, G ;
Liese, T ;
Grünert, W .
CATALYSIS TODAY, 1999, 54 (04) :401-406
[39]  
Schwidder M, 2004, STUD SURF SCI CATAL, V154, P2484
[40]   Active sites for NO reduction over Fe-ZSM-5 catalysts [J].
Schwidder, M ;
Kumar, MS ;
Brückner, A ;
Grünert, W .
CHEMICAL COMMUNICATIONS, 2005, (06) :805-807