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Published on: March 9, 2021
Application of k- and q-space encoding NMR techniques on granular media in a 3D model fluidized bed reactor
Silke Harms1, Siegfried Stapf, Bernhard Blümich
1Institute (formerly Instituet) of Technical Chemistry and Macromolecular Chemistry, ITMC, RWTH Aachen, Worringer Weg 1, 52074 Aachen, Germany.
Abstract:
A combination of PFG-NMR imaging and velocity encoding methods was applied to investigate the dynamic behavior of a bed of poppy seeds subjected to air flow, representing a model setup for fluidized bed reactors. The particle motion is described both from a statistical point of view, by determining propagators and dispersion coefficients representing an average over the whole bed volume, as well as combined with spatial resolution by generating velocity maps. Velocity images of different horizontal slices in the bed confirm the notion of a toroidal particle flow pattern inside the shallow granular bed. Despite the need of considerable averaging due to the random motion of the relatively few particles in the bed, quantitative velocity images and statistical information about the random particle motion can be obtained from monitoring the fluid component in the seeds by conventional spin-echo techniques.

