Title of article :
Molecular mobility in fixed-bed reactors investigated by multiscale NMR techniques
Author/Authors :
Ren، نويسنده , , Xiaohong and Stapf، نويسنده , , Siegfried and Kühn، نويسنده , , Holger and Demco، نويسنده , , Dan E. and Blümich، نويسنده , , Bernhard، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Pages :
8
From page :
261
To page :
268
Abstract :
The complex problem of a fixed-bed reactor consisting of catalytically active particles provides an exceptional opportunity of combining a wide range of NMR methods which have become available over time as tools to probe porous media. This work demonstrates the feasibility of different NMR techniques for the investigation of the intra- and interparticle pore space over length scales from nanometers up to centimeters. ndustrially relevant cracking reactions leave a coke residue on the inner surface of the porous catalyst particles so that the active sites become inaccessible to the reactants. Moreover, the pore space shrinks due to the formation of coke, thereby hindering molecular transport. The presence of the coke residue and its influence on the mobility of adsorbed fluid molecules are probed by 129Xe spectroscopy, NMR cryoporometry, relaxation dispersion measurements, and investigations of the reduced diffusivity in the intraporous space. ids surrounding the random arrangement of catalyst pellets represent another pore space of much larger dimensions, the properties of which can be more directly investigated by mapping the fluid density and the velocity distribution from velocity-encoded imaging. Propagator representations averaged over large sample volumes are discussed and compared to velocity images obtained in selected axial slices of the reactor.
Keywords :
Porous media , Flow , diffusion , Relaxation , Catalyst
Journal title :
Magnetic Resonance Imaging
Serial Year :
2003
Journal title :
Magnetic Resonance Imaging
Record number :
1828637
Link To Document :
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