In situ MAS NMR investigation of the hydrogenation of acrylonitrile on Pt- and Rh-containing zeolites Y

被引:9
|
作者
Henning, Harald [1 ]
Dornbach, Mark [1 ]
Scheibe, Matthias [1 ]
Klemm, Elias [1 ]
Hunger, Michael [1 ]
机构
[1] Univ Stuttgart, Inst Chem Technol, D-70550 Stuttgart, Germany
关键词
Zeolites; Noble metals; Hydrogenation activity; Acrylonitrile; In situ MAS NMR spectroscopy; SOLID CATALYSTS; HYDROCARBON CONVERSION; FLOW CONDITIONS; ACID SITES; PROBE;
D O I
10.1016/j.micromeso.2012.06.021
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
This work presents first ex situ and in situ MAS NMR spectroscopic studies of the effect of noble metal reduction on the hydroxyl coverage of zeolites 0.9[Pt]Na-Y and 0.4[Rh]Na-Y and the hydrogenation of a double-bond-containing organic reactant, acrylonitrile. By H-1 MAS NMR spectroscopy, it was found that the number of Bronsted acidic bridging OH groups (SiOHAI) formed upon noble metal reduction under flowing hydrogen nearly agrees with the number of the initially introduced complexes of bivalent metal cations. Hence, about 50% of the bivalent metal cations formed two SiOHAI groups per metal site upon reduction. After adsorption of reactants on the reduced metal-containing catalysts, no effect of the noble metals on the chemical shieldings of C-13 nuclei of these molecules occurred. On the other hand, the 1H MAS NMR signals of reactant molecules adsorbed on zeolite 0.9[Pt]Na-Y have shown a significantly larger residual line width compared with those on zeolite 0.4[Rh]Na-Y, which indicates a higher mobility of reactants adsorbed on the latter zeolite. By in situ H-1 MAS NMR spectroscopy of the acrylonitrile hydrogenation carried out under semi-batch conditions at 295 K, a reaction velocity on zeolite 0.4[Rh]Na-Y (r = 7.0 x 10(-3) mmol/s) was determined, which is more than a factor six higher in comparison with that on zeolite 0.9[Pt]Na-Y (r = 1.1 x 10(-3) mmol/s). During the initial period (t = 12-24 s) of the acrylonitrile hydrogenation on zeolite 0.4[Rh]Na-Y, weak H-1 MAS NMR signals of temporary intermediates were observed. These temporary signals may be due to half-hydrogenated intermediates with short lifetime. (C) 2012 Elsevier Inc. All rights reserved.
引用
收藏
页码:104 / 110
页数:7
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